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ORDER NO. VAD-8403-513 


Color Video Camera 


PK-958 


Vol. 1 


Summary 


Adjustment 
Procedures 


Vol. 3 


Block Diagrams 


Vol. 4 


schematic Exploded Views 
Dlagrams Replacement 
Printed Circuit Parts List 


Board Diagrams 


Division of Matsushita Electric 


Maisushita Engineering & Service Campany Panasonic Hawaii inc. Panasonic Saies Company, 
91-238 Kauhi St. Ewa Beach Division cf Matsushita Electric 
P.O. Box 774 of Puerto Rico, Inc. 


Corporation of America 
50 Meadowiand Parkway, Secaucus. 
New Jersey 07094 


Honoluiu, Hawall 96808-0774 Ave, 65 De infanteria, KM 97 
Victoria industrial Park 
Matsushita Electric Carolina, Puerto Rico 00630 


ORDER NO. VRD-8403-513 


ervice Manual 


Vol. 1 


Summary 


SPECIFICATIONS 


Power Source: 


Power Consumption: 
(with E.V.F.) 


Newvicon Tube 
System: 


Single Carrier 
Frequency: 

Focus System: 

Lens Mounting: 

Lens: 


Lens Diameter: 
Light Sensitivity: 


Video Output Level: 
Sync. System: 

Signal to Noise Ratio: 
Horizontal Resolution: 


DC 12V+10% 

AC 120V + 10%, 60Hz+0.5% 
(with Power Supply Unit) 

DC 6.6 W at 12V DC (Battery) 
(6W with Auto Focus off} 

DC 2.0W at standby 


2/3” frequency separation single tube 
system (built in stripe filter) 


5MHz 

Electro-static type 

Built in zoom lens (not ‘‘C’’ mount) 

8:1 zoom lens with auto/manual iris 

control 

Power zoom lens (2 speed) and macro 

construction 

F: 1.4, f: 1l1mm~ 88mm 

d: 1.0m to infinity 

58mm 

Minimum light intensity on optical 
image: 7 lux (F: 1.4) 

Optimum light intensity on optical 
image: 900 lux 

1.0 Vp-p, 750 (Standard NTSC signal) 

Internal Sync.: RS-170 

More than 45dB 

300 lines 


Panasonic. 


Panasonic Company 

Division of Matsushita Electric 
Corporation of America 

One Panasonic Way, Secaucus, 
New Jersey 07094 


Color Video Camera 


PK-958 


PK-958 


Color Temperature 


Control: 


Microphone: 
Audio Output Level: 
Audio Output 


Impedance: 


External Microphone 


Input Impedance: 


(Left, Right) 


Electronic Viewfinder: 


Operating 


Temperature: 


Operating Humidity: 
Operating Position: 
Weight: 


Dimensions: 


2 step switch (indoor/outdoor) & 
Auto adjust 

Stereo microphone 

—20dB, Hi-impedance 


High impedance (1 KQ) 
6000 unbalanced 
Monochrome 1 inch CRT 


5°C to 40°C 

10% to 75% 

Nomal position and Gain up position 
Camera Head with E.V.F 

5.5 lbs (with lens, 7 ft cable & shoulder 
pad/handle grip) 

AC adaptor (option) 

2.4 lbs 

Camera Head with E.V.F. 

8.4°(W) x 7.7"(H) x 16.4 (D) 
210mm(W) x 192 mm(H) x 409 mmiD) 
AC adaptor (option) 

3"(W) x 3"(H) x6"(D) 

79mm(W) x 75mm(H) x 149mm(D) 


Weight and dimensions shown are approximate. 
Specifications are subject to change without notice. 


Panasonic Canada 


Panasonic Hawaii Inc. 
91-238 Kauhi St. Ewa Beach 
P.O. Box 774 

Honolulu, Hawaii 96808-0774 


Panasonic Saks Company, 
Division of Massushita Electric 
of Puerto Rico, Inc. 

Ave, 65 De Infaatteria, KM 9.7 
Victoria Indust al Park 
Carolina, Puetio Rico 00630 


Division of Matsushita Electric 
of Canada Limited 

5770 Ambler Drive, Mississauga, 
Ontario, L4W 2T3 


CONTENTS 


GENERAL SAFETY PRECAUTIONS 1.0... 0... cc ee 1-1 
CAMERA FEATURES AND CONTROLS... ........... 0.22.00. cee 1-3 
CONNECTION DIAGRAM WITH VCR .. 01... ee 1-6 
VIEW MINDER DISPLAY .. 0.0... oe eee 1-7 
PREPARING TO RECORD ........ 0... . cc ne 1-8 
TITLE DISPLAY ©... 0... eee 1-11 
EXTERNAL TITLE DISPLAY . 2.0... 0... ee eee 1-15 
TIME LAPSE RECORDING......... 0... 0.0 ec eee ee ee 1-16 


GENERAL SAFETY PRECAUTIONS 


PRODUCT COMPLIES WITH DHHS PULES 21CFR SUBCHARTER 
J APPLICABLE AT DATE OF MANUFACTURE 
SAFETY PRECAUTION 


GENERAL GUIDELINES 


1. 


When service is required, observe the original lead dress. Components, wires or cables that indicate evi- 
dence of overheating or other electrical or mechanical damage should be replaced. 

After servicing the camera, power supply and electronic viewfinder, all the protective devices, such as 
insulation tape, shields and isolation R-C combinations must be properly installed. 

Potentials as high as 5KV are present when the electronic viewfinder is operating. Operation without the 
camera head side covers, finder case ass’ys of electronic viewfinder and covers of power supply unit pres- 
ents a danger of shock hazard from the camera power supply. 

Servicing should not be attempted by anyone who is not thoroughly familiar with the precautions that 
should be taken when working on high-voltage equipment. Always discharge the anode of the picture 
tube to the main chassis before handling the tube. 

After servicing, make the following leakage current checks to prevent the customer from being exposed 
to shock hazards. 


LEAKAGE CURRENT COLD CHECK 


Conduct this test on the power supply unit with the camera disconnected and repeat with the camera 
power supply unit and electronic viewfinder properly assembled. Also, repeat test with and without 
available approved accessories/cables/connectors. 

Turn the AC switch on. 

Measure the resistance value, with an ohmmeter, between the jumpered AC plug and each exposed termi- 
nal, screwheads and coaxia! connector. 

The resistance measured should not be less than (infinity). 

Any resistance value below this range indicates an abnormality which requires corrective action. 

Repeat the test with the AC switch in the “off” position. 


LEAKAGE CURRENT HOT CHECK 


Conduct this test on the power supply unit with the camera disconnected and repeat with the camera, 
power supply unit and electronic viewfinder properly assembled. Also, repeat test with and without 
available approved accessories/cables/connectors. 

Plug the AC cord directly into the AC outlet. Do not use an isolation transformer for this check. 
Connect a 1.5K 10 watt resistor, paralleled by 0.15\1F capacitor, between each exposed metallic part 
on the unit and a good earth ground such as a water pipe, as shown in figure 1. 

Use an AC voltmeter, with 10002 /volt or more sensitivity, to measure the potential across the resistor . 
Check afl exposed metallic parts of the cover (Cable connection, Handle bracket, metallic cabinet, 
Screwheads, Metallic overlays, etc), and measure the voltage at each point. 

Reverse the AC plug in the AC outlet and repeat each of the above measurements. 

The potential at any point should not exceed 0.75 V RMS. 

A leakage current tester (FLUKE MODEL: 8000A equivalent) may be used to make the hot checks. 
Leakage current must not exceed 0.5 milliamp. 

In case a measurement is out side of the limits specified, there is a possibility of a shock hazard, and cor - 
rective action must be taken before returning the instrument to the customer. 


1-1 


AC VOLTMETER 
QC 

DEVICE a 
UNDER 
TEST Cc ) 

Test all ih 

exposed 0.15 uF 

metal parts “TO § y 

+ Water pipe 
(Earth Ground) 
AC OUTLET Figure 1. Leakage Current Hot Check 


xX 
1. 
2. 


RADIATION 

The potential source of x-radiation in electronic viewfinder is the high-voltage section and picture tube. 
It is important to use a periodically checked and accurate high-voltage meter, to monitor and check the 
high voltage. 

Rotate the brightness control and contrast fully counterclockwise for this test. 

Observe that the high voltage does not exceed the specified value. 

Excessive high voltage may cause a possible x-radiation hazard. 

The camera system should be repaired as soon as possible. 

It is essential to use the specified picture tube to avoid a possible x-radiation hazard. 


ELECTROSTATICALLY SENSITIVE (ES) DEVICES 


Some semiconductor (solid state) devices can be damaged easily by static electricity. Such components commonly 
are called Electrostatically Sensitive (ES) Devices. Examples of typical ES devices are integrated circuits and some 
field-effect transistors and semiconductor ‘chip’ components. The following techniques shouid be used to help 
reduce the incidence of component damage caused by static electricity. 


1. 


Immediately before handling any semiconductor component or semiconductor-equipped assembly, drain off any 
electrostatic charge on your body by touching a known earth ground. Alternatively, obtain and wear a commercial- 
ly available discharging wrist strap device, which should be removed for potential shock reasons prior to applying 
power to the unit under test. 


After removing an electrical assembly equipped with ES devices, place the assembly on a conductive surface such 
as aluminum foil, to prevent electrostatic charge buildup or exposure of the assembly. 


Use only a grounded-tip soldering iron to solder or unsolder ES devices. 


Use only an anti-static solder removal device. Some solder removal devices not classified as “anti-static” can 
generate electrical charges sufficient to damage ES devices. 


Do not use freon-propelled chemicals. These can generate electrical charges sufficient to damage ES devices. 


Do not remove a replacement ES device from its protective package until immediately before you are ready to install 
it. (Most replacement ES devices are packaged with leads electrically shorted together by conductive foam, 
aluminum foil or comparable conductive material). 


Immediately before removing the protective material from the leads of a replacement ES device, touch the protective 
material to the chassis or circuit assembly into which the device will be installed. 
CAUTION: Be sure no power is applied to the chassis or circuit, and observe all other safety precautions. 


Minimize bodily motions when handling unpackaged replacement ES devices. (Otherwise harmless motion such 


as the brushing together of your clothes fabric or the lifting of your foot from a carpeted floor can generate static 
electricity sufficient to damage an ES device). 


1-2 


CAMERA FEATURES AND CONTROLS 


[Tally Light + 


| Stereo Microphone 


Distance Detection 
Windows 


| Power Zoom Switch 


Record/Pause Trigger 
Button 


Electronic Viewfinder 


(EVF) 


| Accessory Shoe 


Electronic Viewfinder 


Eyepiece 


VCR/CAMERA Selector 
Switch 


| AWB Selector Switch 


Color Temperature 
Correction Switch 


‘| WB Button 


_ 


+ Iris Control 


_ 


Zoom Lever with Macro 


Setting Button 


|__| Tripod Mounting Hole | 


{Lens Focus Ring 


| Record Review Button joo 


1-3 


Auto Focus Switch | Camera Remote Control 
[ )Buttons 


Focus Out Button 


Use finger to open 


[Externat Title Switch |_____ ; 


[Interval Timer Switch 


Title Key Board Control 
Panel 


_———| Title Reverse Button 


VIEW TITLE 


FADE MINDER MODE DISRLAY CALL +. COL LAR/RST 


[Fade Button ] Stopwatch Lapse/Reset 
Button 


| View Minder Button ‘a 


Stopwatch Start/Stop 


[Mode Selector Button f;_— Button 


[Title Display ON/OFF 1 Title Color Button | 


Button 
———|Title Call Button 


1-4 


Viewfinder 


Fade 
indicator 
(white display) 


Light 
Intensity 
Indicator Record/Pause 


(white bar) 'ndicator 


| Shoulder Strap Hooks 


(Red Control Knob 


| Blue Control Knob 


[40-pin Camera Cable | 


[Power Light H 


[Standby Switch [J 


Negative/Positive Reverse 
Switch 


[ Shoulder Pad t+ 


+ Picture Turning Switch | 


we 


=a | EVF Lock Lever | 
im ——EVF Connector _| 


JEVF Mounting Roller | 


——| Audio Turning Switch | 


- + Microphone Lock Button | 


L Battery Socket | 


Handle Lock and Release 
Button 


Stereo/Monaural Selecior 


Switch 


External Microphone 


Inputs 


{Microphone Connector 


1-5 


+VHS Compatibility Switch 


CONNECTION DIAGRAM WITH VCR 


The camera must be connected to a VCR and/or power source because the camera does not have a power source of 
its own. 


Connect the camera as shown. 
Note all power should be off when making cable connections. 
Connecting cables with power on can damage the units. 


A: Camera Head and Portable VCR or VCR with 10-pin connector 


fo) 
C290 90000 r 
Camera 
10 pin Camera Cable (7ft) Input Terminal 


B: Camera Head, optional power supply and VCR without 10-pin connector 


Camera Input Connector 


[VIDEO IN Connector 
AUDIO IN Connectors (Left, Right) 


pCAMERA REMOTE 
PAUSE Connector 


Power Supply (optional) _ 
_ (PK-A789S) 
cer Camera Cable 


REAR | 2 8.99 . [ooGs 


| ah ; ; 1 2 
Remote Control Jack —+-©) s 1 Output Jack (RCA) 
~~ . Video Output 
Connector (UHF) 
120V AC 
60Hz 


1. Video Cable to VIDEO IN Connector 

2. Audio Cables to AUDIO IN Connectors 

3. VCR Remote Pause Cable to REMOTE 
PAUSE Connector 


Note: « The camera cable between camera head and power supply or between camera head and portable VCR can 
be extended by using the optional extension camera cables. 
(Use three 20 feet extension cables to extend upto 67 feet) 


* The connections between the VCR and TV set are explained in the operating instructions for the VCR. 


1-6 


VIEW MINDER DISPLAY 


View minder display (Camera check display) 

The camera’s setting conditions can be displayed on the viewfinder by pressing the View minder button when the VCR 
is inthe Record/Pause mode. When the View minder button is pressed again, the display disappears. This View minder 
display will disappear during recording and will not be recorded. 


(— INDOOR —\— a. 
AWB... ‘pusH: ——{—b. 
HIGHT =o... OK ——f£—— 
FOCUS. ..... AUTO" © ——;——-d. 
GAIN, | ..... sto ——}—\e. 
REC. ..... XXKXX ——4__ f 
BATTERY ..... i | 
COUNTER ..... WOXKX ——4— h 
\ TIMER... PXSXX—F— i. 
The meanings of these indications are 
a. INDOOR .............. : The color temperature switch is setto 4 position. 
OUTDOOR ............ : The color temperature switch is set to 10; position. 
b ;PUSH: Push the WB button to adjust the white balance. “PUSH” flashes 


IK: White balance has been adjusted. 
); The picture appears reddish. “RED” flashes. 
* The picture appears blueish. “BLUE” flashes. 


Cc. ¢: The illumination is proper. 
J: The illumination is insufficient. “LOW?” flashes. 
d. FOCUS.......... AUTO: Automatic focusing. 
FOCUS ....... MANUAL: Manual focusing. 
e. GAIN............. STD: The Standby switch is inthe STANDARD (STD) position 
GAIN .............. UP: The Standby switch is in the GAIN-UP position. 
f. REC .......... X:XX:XX: Accumulated recording time (X hour XX min. XX sec.). 
Maximum time: 9 hours, 59 minutes and 59 seconds. 
This will be reset when the power is off. 
g. BATTERY... E —--—- F: This display indicates that the battery in the portable VCR is fully charged. 
E--- F: 
The hyphens will disappear as the battery charge is used. 
E -- F; 
Es F: The last hyphen flashes just before the VCR turns itself off. The battery mustbe re- 
charged before further use is possible. 
h. COUNTER ..... MXXXX: Tape counter and its memory will be indicated in conjunction with the ds play 
counter of the portable VCR. 
i. TIMER ....... RXXSXX: Interval timer recording 


Recording time XX min. Standby time XX min. 
Note: « On some portable VCRs, VCR information (battery indicator, tape counter and its memory) will not by dis- 
played. 
e Interval timer recording is not available when the camera is connected with a table type VCR. 


1-7 


PREPARING TO RECORD (BASIC OPERATION) 


Auto Focus 

Button 
VCR/CAMERA 
Switch 


Tally Light 


Color Controls a 
(Red, Blue) 


Negative 


Positive 
Switch 


Standby 
Switch 


VHS Compatibility 
Switch 
Selector Color 
Switch Temperature 
W.B. Button ; Correction 
Iris Switch 


Control (fitter selection) 


1. Connect the camera and VCR as shown on page 10. 
2. Turn on the VCR power and the camera power supply (if used). 
Note: On some VCR models, you may have to switch the input selector to the CAMERA position. 
3. Ifthe VCR has camera remote feature, set the camera remote switch to the ON position. 
4. Set the VCR/CAMERA switch to the CAMERA position. 
5. Set the standby switch to the OPERATE position. 
The View minder display appears on the viewfinder. 
6. The camera should be in the Record/Pause mode. 
REC, PLAY and PAUSE buttons are lit on the VCR (or such indication in VCR display window). 
If Record/Pause mode is not indicated at the VCR, put the VCR in Record/Pause. (See VCR Operating Instructions 
for Camera Recording). 
7. The VHS compatibility switch is set to “1” position when the camera is shipped from the factory. 
Make sure the Record/Pause indicator on the viewfinder is not lit and that the VCR is not recording. 
ifthe Record/Pause indicator is off and the VCR is recording, set the VHS compatibility switch to the “2” or “3” posi- 
tion. 


You will have to siide the shoulder pad back to gain access to this switch. 


VHS Compatibility 
Switch 


@ 


8. Remove the lens cap. 


9. Set the color temperature correction switch. 


} ----for outdoor use. 
© ---for indoor use. 


1-8 


PREPARING TO RECORD (CONTINUED) 


10. Make sure the light intensity indicator (the white bar on the lett side of the viewfinder) is in the proper position and 


11. 


that the View minder display indicates “LIGHT ----- OK”. If the “LIGHT ----- LOW” is displayed, additional illumina- 
tion is required. 


1. | 2. 3. 4. 


Approx. 's 


1/3 of Height. 


® Usable iris setting range. * Proper iris setting position. © [Hlumination too high. ¢ [llumination too low. 
Close the lens iris. Open the lens iris, or additional il- 
lumination is required. 


¢ When the iris control is pushed in, the auto-iris automatically adjusts the lens opening to admit the proper amount 
of light. When the iris control is pulled out, the lens iris can be manually adjusted by turning it. 
* If you need to shoot in low light conditions, set the standby switch to GAIN-UP to make the picture brighter. 


White balance adjustment 
When the camera is first turned on, permit warm up for approximately 30 seconds before adjusting white balance. 
Make sure the color controls (Red, Blue) are in the detent position. 
For simplified adjustment 
Set the A.W.B. selector switch to FULL AUTO position. “AWB-----OK” appears on the View minder display. 
For accurate adjustment 
a. Set the A.W.B. selector switch to PUSH position. “AWB----- PUSH” appears on the View minder display. 
b. Aim the camera at a white object or background (never at a light source). 
c. Push the W.B. button in and hold for 2 to 3 seconds until the “AWB.------OK” appears on the View minder display. 
This indicates the white balance has been automatically set. 
Note: © Make sure “LIGHT-----OK” appears on the View minder display. 
if “LIGHT-----LOW” appears, automatic white balance control function will not operate. 
© The White balance is held in memory for about 2 hours even when the camera power is switched off. 
When power is switched on again within this time, “AWB--.--OK” appears on the View minder display. 
d. Ifthe “AWB------ RED” or “AWB.-----BLUE” is displayed the picture appears reddish or blueish and optimal white 
balance is not possible. This will be caused by a wrong position of color temperature correction switch. 
e. You need to push the W.B. button every time the lighting conditions change. 


© Set the A.W.B. selector ¢ Change the position of Color temperature 
switch to FULL AUTO. correction switch when indoor shooting is 
[|e “AWB-----OK” appears. changed to outdoor shooting, and vice versa. 
e Proceed to recording. © Proceed to recording. 
© Set the Color 
temperature 
correction 
sen ror @ “AWB-----OK” e You need to readjust the 
outdoor use. _| appears. |_,| white balance when the 
© Proceed to lighting conditions change 
© Set the AWB ¢ Push recording. e Change the position of Cdor 
selector switch W.B. temperature correction 
Le} to PUSH. ‘1 button. 1 switch when indoor shootng 
is changed to outdoor 
@ “AWB:-.--PUSH” shooting, and vice versa. 
appears. 


@ “AWB:----RED” or © Check to see if the Color 
L. “AWB----BLUE” [|.4.! temperature correction 
appears. switch is properly set. 


1-9 


AWB 


Selector 
Switch 
Color 
wB Temperature 
Correction 
Button Switch 


12. If you are shooting indoors and have a color TV hooked up as a monitor, you can adjust the color balance using the 
color controls (Red, Blue). Set the A.W.B. Selector switch to PUSH position. 


You can also use these controls for special effects. 
For example: make a sunset more spectacular by increasing the red balance. 


1-10 


TITLE DISPLAY (INTERNAL TITLE) 


You can compose your own titles and insert the titles onto a recording. 
The title keyboard is located inside the left side cover. 
The keyboard contains 26 alphabet keys, 10 number keys, 18 types of symbols and several control keys. 


Title Reverse 


 & 
Ms. 


sy 
: ay ys Use your finger 


Title Titie 
Display Call 
Button Button Title 


Memory 
Key 
Clear 
Key All 
Reset 
Delete Button 
Key Size Key 


Edit Key 


Space Return CursorKey Cursor Key 
Key Key (reverse) (forward) 


1-11 


TITLE DISPLAY (CONTINUED) 


Useful Control Keys for Composing Titles 

@ Cursor Key 
Allows you to move the flashing cursor to a desired location. There are two keys for forward and reverse directions. 
When you press the Shift key and Cursor key simultaneously you can move the title to a right or left direction. 


@ Delete Key 


Allows you to erase unwanted characters. When you press the Delete key you will delete the character on the left of 
the flashing cursor or flashing letter. 


__ 


. Press the Delete ne a 
KS ey Key TITLE 1 ) 


@ Return Key 
Just like a typewriter this key allows you to return to the left, on the next line. When pressed at the end of the bottom 
line it moves the flashing cursor to the upper left corner. 


@ Size Key 
Four different character sizes can be obtained by pressing the Size key once for each size. 


fa 
AR — A —_—_—, A _ 
2 times 3 times 
in horizontal 
(9 rows, (9 rows, (4 rows, (3 rows, 
20 columns) 10 columns) 10 columns) 7 columns) 


@® Shift Key 
This key allows you to use the 18 types of symbols and also to shift the title’s position. 


@© Space Key 
When pressed creates a space between words when needed. 


@ Clear Key 
Pressing the Clear key clears the title and moves the flashing cursor to the upper left corner. 


1-12 


Tocompose a title 
Make sure the VCR is in the Record/Pause mode or Stop mode. 


1. Press the Title Display button or View minder button to erase the View minder display. 


2. Press the Edit key on the keyboard so that the cursors appear on the viewfinder. 


(S 


Sn i, st ine ei 
so i i i'n a i a 
a a daw ew 
ile a, ek nie, i i som 
‘imi see: ak Vn te se em in 
ee 
ek th i, 
ee ee ee 


ie hs, hi Se is 


TITLE 1 


The cursor on the upper left corner of the monitor flashes and title page number appears on the lower left comer. 
The flashing cursor indicates the location at which the character is to be displayed. 


3. You may press the Clear key to erase any characters appearing on the Viewfinder. 


4. Character size can be changed by pressing the Size key. 


5. Display the letters, numbers and symbols needed to create your title by directly pushing the keys as you would ona 
typewriter. 


To display the symbols press the Shift key at the same time you are pressing the symbol key you want to display. 
Once characters are displayed, a character flashes at the position where it can be changed by pressing the key. 


6. When you have finished composing your title, press the Memory key to store the title in memory. The next title page 
number will then appear together with the cursors. Follow steps 3 thru 5 to compose titles in pages 2 thru 8. 


{~ ‘ ( ~ 

TRIP TO--- ee ee 

s E A TT Le — a com >_> cee 

ae ae ee ee Press the “ST 
se ; Memory woe 

CTTLE 1 a i, Key \ TITLE 2 yy 


Note: © The battery must be inserted in the camera for the titles to be saved. 

¢ The ALL RESET button is used to clear all titles trom the memory. This button is recessed and can be press ed 
with a pencil point, etc. 
Be sure to push the ALL RESET button when you compose the title for the first time or after you replace thepat- 
tery, otherwise random characters may appear on the monitor. 

* Make sure fresh battery is installed so that the title memories are retained when the camera power is turnedoff. 
When the battery level is low, all titles retained in the memory will be cleared. 
The battery life is around 1 year. 


Battery level can be checked using the View minder display (See page 13). 


1-13 


TITLE DISPLAY (CONTINUED) 


To record a title you have composed 
1. Press the Edit key a second time. Title page number and cursors disappear on the monitor. 


( . ( >) 
TRIP TO--- TRIP TO 
SEATTLE--- ——+ SEATTLE 
ee eee Press the 

Edit 
TTT eee Ke 

y w 

TITLE 1 J ~ ) 


2. Press the Title Call button until desired title appears on the monitor. 


3. Select the title color by pushing the Title Color button. 
4 colors (White, Red, Green, Blue) are selectable. 
Title color display appears on the monitor together with title display. 


(| RIP TO (| “ W ” indicates that the title 


color is white and disappears 
SEATTLE ea when the recording starts. 
“R”----Red 
(:97---- Gren) 
“B”---- Blue 
Ww 


\ /] 


4. Press the Record/Pause button on the handgrip to start or stop the recording. 


5. Title Display button is used to turn the title display on and off. 
Press the Title Display button when you want to remove title display from picture. 


Title reverse 

After composing the title, you can use the title reverse feature. 

By pressing the Title Reverse button in the Record/Pause mode, the color titles and background are reversed as below. 
Select the color with the Title Color button. 


Picture in 
characters 
( ) Red colored (— : /) 
/ characters 
VISE O = VIDE 
Red 
colored —T R 
Ne y, background \ _S 


Note: When the title display color is white,.this function will not be available and grey background appears by pressing 
the Title reverse button, and white title portion remains white. 


1-14 


EXTERNAL TITLE DISPLAY 


Your own title can be recorded by using the external title feature. 


How to make external title 
Draw graphics or write title as large as possible on the white paper/panel. 


Title 
Reverse 


white . 
paper black External Title 
fl Switch 
\ Record/Pause Iris 
Button Control 
y Power Title 
TRIP TO Zoom Color 
SEATTLE Button 


The graphics or title should be black for best results. 


How to record external title 

Make sure that the VCR is in the Record/Pause mode. 

1. Aim the camera at the external title. 

2. Set the screen/title size by using zoom and focus the title. 

3. Set the External title switch to the ON position. 

4. Select the title color by pushing the Title Color button. 

5. When the title letters are not clear, pull the iris control out and adjust the iris manually. Additional illumination may be 
required. 

You may use the Title reverse and Negative/Positive reverse features. 

Press the Record/Pause button to start or stop the recording. 


N@ 


Note: ¢ The date, time and stopwatch can be recorded with the external title. 
When the external title is displayed, the internal title function will not operate. 


1-15 


TIME LAPSE RECORDING 


The interval Timer allows you to do time lapse recording. This type of recording enables you to do short recordings over 
a long period of time automatically. Time lapse recording is not available when the camera is connected with a table 
type VCR. 


Record/Pause 
Button 


View Minder __ Title Display 
Button Button 


ae eo ae. 
KDAUST "O}; 0 


7 aN 
Interval Standby Recording 
Timer Time Time 

Switch Set Button Set Button 


To set the Time lapse recording. 


1. Press the View minder button to display the View minder display. Make sure that the VCR is in the Record/Pause 
mode. 

2. Set the Interval timer switch to the “R” position so that “TIMER ---- RXXSXX” appears on the View minder display 
and time lapse recording (recording-~ standby-—recording ---) is possible. 


(— INDOOR a ) 


AWB _ BUSH 
UGHT ow... OK 
FOCUS ..... AUTO 
GAIN... STD 
REC... XXK-XX 


TIMER... RXX SXX L— i i 
\ E —F] interval timer display. 


When the switch is set to the “S” position, “TIMER ---- SXXRXX” appears and reverse operation (standby —™ record- 
ing —™ standby ---) is possible. 
When the switch is set to OFF position, no timer dispiay appears and time lapse recording is not possible. 


1-16 


3. Press the Set buttons with a pencil point to adjust the recording and standby time while watching the View minder 
display on the viewfinder. Maximum time for recording and standby is 59 minutes. Minimum time for recording and 
standby is + minute. 


a 


INDOOR 
AWB... PUSH 
LIGHT... OK 
FOCUS ..... AUTO 
GAIN... STD 
REC... X:XX:XX 
BATTERY ..... E----F 
COUNTER ..... MXXXX |_-Example 
TIMER... Ross4o—~ ] recording(5 min)—— standby(40 min)—- recording(5 min) 
; ® ia @)-ot Repeat 
' ' t 
: {¢ ‘ \ { 
vy } 
Camera recording is Camera 
recording ; recording 
sto 40 min 
(5 min) pped ( ) (5 min) 
£ ¢ { 
77 ? 


@ The power light flashes in green during standby time of VCR and giows red when picture appears on the viewin- 
der or monitor. 
@ Picture appears 1 minute before recording resumes and power light turns red. 


4. Press the Title Display button to remove the View minder display and display the title you want to record. 
You can also display date, time and stopwatch. 


5. Press the Record/Pause button to start the timer. 


6. To discontinue the timer operation, place the Interval timer switch in the OFF position and press the Record/Paise 
button to stop the recording. 


10 Pin Camera Connector Diagram 


Video out (Rec) © 
Video in (PB) 


Serial Data 


1-17 


Audio out (Left) 


Pause 


Ground 


Standby Out 
Audio out (Right) 


Panasonic. 
MATSUSHITA ELECTRIC 


Printed in Japan 


ORDER NO. VRD-8403-513 


Service Manual 


Vol. 2 


Adjustment 
Procedures 


SPECIFICATIONS 


Power Source: 


Power Consumption: 
(with E.V.F.) 


Newvicon Tube 
System: 


Single Carrier 
Frequency: 

Focus System: 

Lens Mounting: 

Lens: 


Lens Diameter: 
Light Sensitivity: 


Video Output Level: 
Sync. System: 

Signal to Noise Ratio: 
Horizontal Resolution: 


DC 12V + 10% 

AC 120V 410%, 60Hz+0.5% 
(with Power Supply Unit) 

DC 6.6 W at 12V DC (Battery) 
(6W with Auto Focus off) 

DC 2.0W at standby 


2/3” frequency separation single tube 
system (built in stripe filter) 


5 MHz 

Electro-static type 

Built in zoom lens (not “‘C’’ mount) 

8:1 zoom lens with auto/manual iris 

control 

Power zoom lens (2 speed) and macro 

construction 

F: 1.4, f: 11mm ~ 88mm 

d: 1.0m to infinity 

58mm 

Minimum light intensity on optical 
image: 7 lux (F: 1.4) 

Optimum light intensity on optical 
image: 900 lux 

1.0Vp-p, 752 (Standard NTSC signal) 

Internal Sync.: RS-170 

More than 45dB 

300 lines 


Panasonic Company 


Color Video Camera 


PK-958 


PK-958 


Color Temperature 
Control 


Microphone: 
Audio Output Level: 
Audio Output 


Impedance: 


External Microphone 


Input Impedance: 


(Left, Right) 


Electronic Viewfinder: 


Operating 


Temperature: 


Operating Humidity: 
Operating Position: 
Weight: 


Dimensions: 


2 step switch (indoor/outdoor) & 
Auto adjust 

Stereo microphone 

— 20dB, Hi-impedance 


High impedance (1 KQ) 
6000 unbalanced 
Monochrome 1 inch CRT 


5°C to 40°C 

10% to 75% 

Nomal position and Gain up position 
Camera Head with E.V.F 

5.5 lbs (with lens, 7ft cable & shoulder 
pad/handle grip) 

AC adaptor (option) 

2.4 lbs 

Camera Head with E.V.F. 

8.4°(W) x 7.7"(H) x 16.4”(D) 
210mm(W) x 192 mm(H) x 409 mm(D) 
AC adaptor (option) 

3°(W) x 3H) x6"(D) 

79 mm(W) x 75 mm(H) x 149mm{(D) 


Weight and dimensions shown are approximate. 
Specifications are subject to change without notice. 


Panasonic Hawaii Inc. 


Panasonic Sa@s Company, 
Division of Matsushita Electric 


91-238 Kauhi St. Ewa Beach 
P.O. Box 774 
Honolulu, Hawaii 96808-0774 


Division of Matsushita Electric 
Corporation of America 

One Panasonic Way, Secaucus, 
New Jersey 07094 


of Puerto Rice, Inc. 

Ave, 65 De Intanteria, KM 9.7 
Victoria Indug rial Park 
Panasonic Canada Carolina, Puer o Rico 00630 
Division of Matsushita Electric 

of Canada Limited 

5770 Ambler Drive, Mississauga, 

Ontario, L4W 2T3 


Panasonic. 


CONTENTS 


ADJUSTMENT PROCEDURES..........0 00.0. .ccecccceee ev eenee 2-1 
Disassembly Method ........0 0.0000. cece eee ee eevee eee 2-1 
(1) Disassembly Flow Chart... 2.0.0.0... 00.00 e eee cece ee eee 2-1 

(2) Detailed Disassembly Method .............0... 0.00 cece cece ee. 2-1 

(3) Replacement of The Pick-up Tube... 0.0.0... eee ce eee 2-2 

(4) Replacement of The Power Zoom Lens... 2.0.2.0... 00 cece cece. 2-4 

(5) Replacement of Zoom Motor (VEKWO780)...............------.. 2-5 

{6) Replacement of Auto Focus Motor (VEKWO779)................... 2-6 

{7} Replacement of Iris Motor Assembly (VVAWO0020).................. 2-6 
Test Equipment/Tool List... 2.2.0.0... 00000 ee eee eee eee ee 2-9 
Electrical Adjustment Procedures 2.0.0... 0000... 0c eee cece cece eeeee. 2-9 
{1} +9V Adjustment... 0.0... cece ene eens 2-9 

(2) Deflection Circuit Adjustment... 0.00000... 00. eee cece eee eee 2-10 

(3) Process Circuit Adjustment... 0.0.0.0... 0. ccc ee ee eeceee 2-23 

(4) Electronic Viewfinder Circuit... 2.0.0.0. 00.0 cece ee eee eee 2-28 

(5) Camera Remote Control Circuit... 00.00.0000. cee eee eee eee. 2-29 
Auto Focus Servicing Tools List... 2... 0000. ee ee eee ee eee ee. 2-31 
Auto Focus Lens Adjustment Procedures .............00-0-00cc cee. 2-31 
LOCATION AND TEST POINTS AND CONTROLS...................... 2-35 


ADJUSTMENT PROCEDURES 


Disassembly Method 


Caution: Camera Service must be performed in a dust free location to maintain clean lens elements. 


1. DISASSEMBLY FLOW CHART 


LEFT SIDE COVER 


(1 screw) { 


RIGHT SIDE COVER 


i (3 screws) 


! 


DEFLECTION CIRCUIT BOARD 


(2 screws) { 


! 


PROCESS CIRCUIT BOARD 


i (2 screws} 


i 


Y 


i 


ZOOM MOTOR A.F. MOTOR IRIS MOTOR 
2. DETAILED DISASSEMBLY METHOD 
2-3. 


2-1. Removal of E.V.F unit. 


Turn the E.V.F knob, then, pull out the E.V.F cord 


and remove the E.V.F unit. 


Note: “Left side (Process C.B.A)" and “Right side (De- 
flection C.B.A)’’ disignations refer to the left and 
right sides of camera when viewed from the front 


(lens end). 


2-2. Removal of Left Side Cover 


a, Unscrew 2 screws (rear side) and move the left side 


cover to the rear. 
b. Then, remove the left side cover. 


4 


PICK-UP TUBE SOCKET 
CIRCUIT BOARD 


PICK-UP TUBE 


Removal! of Right Side Cover 


a. 


Move the shoulder slide to the rear. 

Then, press the (A) portion and move the shoulder 
slide to the rear as shown in Fig. 1-A, Unscrew 2 
screws (B). (See Fig. 1-B) 


Portion (A) 


(A) 


Screw (B) 


(B) 


Fig. 1. 


2-1 


b. Move the right side cover to the rear. 

Remove the right side cover. 

d. Disconnect the flexible wire and a connector 
(P604). 


2° 


2-4. Opening of Deflection Circuit Board 

a. Remove the switch case. 

b. Disconnect a flexible wire. 

c. Unscrew 2 screws securing the circuit board to the 
chassis. 

2-5. Opening of Process Circuit Board 

Unscrew 2 screws securing the circuit board to the 

chassis. 


3. REPLACEMENT OF THE PICK-UP TUBE 


3-1. Remove the both side covers and open the process 
circuit and deflection circuit boards (refer to section 
“Disasembly Method’). 

3-2. Disconnect 2 connectors (P602, P603) {see Fig. 2). 

3-3. Unscrew 4 screws (A) and 2 screws (B) (see Fig. 2) 


Screw (A) 


D.Y. Band 


Fig. 2. Right Side View 
3-4. Then, remove the D.Y. band. 
Unsolder and remove a green lead and the preamp 
shield cover (see Fig. 3). 


2-2 


Preamp Shield Cover 


_ Ground Lead 


Fig. 3. Right Side View 


3-5. Unsolder and remove a white lead from the preamp 


circuit board (see Fig. 4). 


White Lead 


Preamp Circuit Board 


Fig. 4. Right Side View 
3-6. Remove the back cover assembly (rear side’, 
Unscrew 2 screws (c) and remove the rear sd e circuit 
board (see Fig. 5). 


Screw (C) 


Rear Side Circuit Board 


Pick-up Tube Deflection 
Yoke Assembly (D.Y.) 


\ 


D.Y. Spring 


oo 


Filter assembly 


oman 


Filter assembly D.Y. Sori 
-Y. Spring 


3-7. 


Fig. 5. 


Remove the pick-up tube socket circuit board and the 
bias light holder from the pick-up tube. (see Fig. 6) 


Bias Light and Pick-up Tube 
Socket Circuit Board 


Rear Side 
Circuit Board 


3-8. 


3-9. 


Fig. 6. Right Side View 


Remove the pick-up tube D.Y. assembly with the 
filter assembly (see Fig. 7). 


Remove the filter assembly and the D.Y. spring from 
the pick-up tube D.Y. assembly (see Fig. 7} 


2-3 


Fig. 7. 
3-10. Loosen the clamp screw and remove the pick-up 
tube from the deflection yoke assembly (D.Y.) (see 
Fig. 8) 
Clamp Screw 
P thes 
Pick-up Tube 


(Newvicon) 


Deflection Yoke 
Assembly (D*Y) 


Fig. 8. Pick-up Tube and D.Y. 


Install the new pick-up tube (S4165) in-the deflec- 
tion yoke assembly (see Fig. 9). 


3-11, 


Pick-up Tube 
(Newvicon) 


. ee 
= 


Deflection Yoke 
Assembly (D.Y.) 


Fig. 9. Pick-up Tube and D.Y. 
3-12. Line up the plastic tab on the D.Y assembly with 
the silver line on the face of the pick-up tube as 
shown in Fig. 10. 


Clamp Screw 


Silver Line 


Plastic Tab 


Fig. 10. 
3-13. Push the pick-up tube in the D.Y assembly as far as 
it will go... 
useing lens cleaning tissue paper to keep the face 
plate spotless (Fig. 11). 


Fig. 11. 


3-14. Reverse the previous steps. 


2-4 


4. REPLACEMENT OF THE POWER ZOOM LENS 


4-1. Remove the both side covers, open the process cir- 
cuit and the deflection circuit boards (refer to sec- 
tion “Disassembly Method”). 

4-2. Unscrew 4 screws (A) and remove the A.V.R circuit 


board (see Fig. 12-A/B}. 


Screw (A) 


A.V.R Circuit Board 
(A). Left Side View 


Screw (A) 


(B). Right Side View 


Fig. 12. 


4-3. Disconnect 3 connectors (P704, P302, 309) (see 


Fig. 13). 


4-5. — Install the new zoom lens... 
useing lens cleaning tissue paper to keep the lens 
spotless. 


4-6. Reverse the previous steps. 


5. REPLACEMENT OF ZOOM MOTOR (VEKWO780) 


5-1. Remove the zoom lens. 
(rever to section ‘‘Replacement of the Power Zoom 
Lens”). 
5-2. Unscrew 6 screws (A) and remove the A.F. cover 
(see Fig. 15). 
P309 
Fig. 13. Left Side View 
4-4. Unscrew 4 screws (B) and remove the zoom lens 
(see Fig, 14-A/B). | | = 
Then, disconnect a connector (M). @ y 
=) i ——~9 CJ 0 
V 
Screw (B) Zoom Lens Cl Q 
aT 


(A) Left Side View 


Screw (B) 


(B) Right Side View 


Fig. 14. 


2-5 


Lens Right Side View Screw (A) 
/ — 
® 
LL 
Top View Screw (A) 


Fig. 15. 

5-3. Unscrew a screw (C) and open the auto focus [A] 
circuit board (see Fig. 16). 

5-4. Unscrew 2 screws (D) and remove the zoom motor 


(see Fig. 16). 


Screw(D) 


Screw (C} 


Auto Focus 
Circuit Board [A] 


Auto Focus Circuit Board [B] 


Fig. 16 Lens and Zoom Motor 


5-5. Install the new zoom motor. 


5-6. Before assembling the power zoom lens to the chas- 
sis, confirm that there are no dust on the lens sur- 
face. 


5-7, Reverse the previous steps. 


6. REPLACEMENT OF AUTO FOCUS MOTOR 
(VEKW0779) 


6-1. Remove the power zoom lens (refer to section “’Re- 
placement the Power Zoom Lens”). 


6-2. Remove the A.F. cover (refer to section “ Replace- 
ment of Zoom Motor’). 


6-3. Unscrew 2 screws (A) and a screw (B). Then, re- 
move the auto focus motor assembly (see Fig. 17- 
A/B). 


Zoom Lens 


A.F Motor 


Screw (A) 


(A) Lens and A.F Motor 


Screw (B) A.F Motor 


(B) Lens and A.F Motor 


Fig. 17. 


7. REPLACEMENT OF IRIS MOTOR ASSEMIL-Y 
(VVAWO0020) 


7-1, Remove the power zoom lens (refer to setion “Re- 
placement of the Power Zoom Lens). 


7-2. Remove the A.F. cover (refer to section’ “Replace- 
ment of Zoom Motor’’). 


7-3. Unscrew 2 screws (A) and remove the isto focus 
[B] circuit board (see Fig. 18). 


Screw (A) 


lo 


Auto Focus Circuit Board [B] 


Fig. 18. 
7-4, Unscrew 4 screws (B) and remove the hex screw and 
unscrew a screw (C). 
Then, remove the relay lens adjustment screw hold- 
er and the relay lens adjustment screw (see Fig. 19- 
A/B). 
7-5. Remove the chassis. 
Chassis 
Screw (B) 
(A) 
Hex Screw (1.5mm) 
. ‘ ag 
(B) Screw (C) Relay Lens Adjustment 
Screw and holder 


Fig. 19, 


2-7 


Unscrew 2 screws (D) and remove the filter holder 
assembly (see Fig. 20-A/B). 


7-6. 


Screw (D) 


Filter Holder Assembly 
(A) 


Filter Holder Assembly 
(B) 


Fig. 20. 


Unscrew 4 screws (E) and remove relay lens assemn- 
bly with iris motor assembly (see Fig. 21- A/B). 


7-7. 


Screw (E) 


(A) 


Relay Lens Assembly with 
Iris Motor Assembly 


Lens Assembly 


(B) 


Fig. 21. 


7-8. Unscrew 3 screws (F) and remove the iris motor 


assembly (see Fig. 22-A/B). 


2-8 


(B) 


Screw (F) 


Relay Lens Assembly 


lris 
Iris Motor Assembly 


7-9. 


7-10. 


Fig. 22. 


Install the new iris motor assembly... 
before assembly of the iris motor assembly to the 
chassis, confirm that there are no dust on the iris 
motor assembly. 


Reverse previous steps. 


TEST EQUIPMENT/TOOL LIST 


1. Light Box w/Chart 
Part Number 


Light Box w/Chart Set... VFKS002 

Gray Scale Chart....... VFKSO02A 
ColorChart.......... VFKS002B 
Registration Chart... ... VFKS002C 
Resolution Chart....... VFKS002D 
Light Box ........... VFKS002Y 


Reflection Chart 
Part Number 


Reflection Chart Set ... VFKS003 

Gray Scale Chart...... VFKSO0O3A 
Color Chart ......... VFKS003B 
Registration Chart. .... VFKSO003C 
Resolution Chart...... VFKS003D 
Color Sheet ......... VFKSOO03E 


2. 3200°K Studio Light (See your Jocal photo supply dealer): 
Minimum requirement is 2 flood lights about 350-500 watts each. 


3. Luxmeter 

We recommend one of the following: 

A. Portable luxmeter Model No. 3281 by Yokogawa 
Yokogawa Corporation of America 
2 Dart Road Shenandoah, GA 30265 

B. Electronic Foot Candle Meter by Panlux 
Berkey Marketing Company 
25-30 Brooklyn Queens Expressway Woodside, 
New York 11377 


4. FM Detector 
Part No. -—-——— VFKSOOIC 


5. Oscilloscope 
Dual Trace, 25MHz, 2mV/DIV. 
Minimum Sensitivity with Delay Mode. 
6. Vector Scope 
7. VTVM or Digital Voltmeter 
8. Tripod 


9. Frequency Counter 


10. Hex Wrench (1.5mm/7mm). 


Electrical Adjustment Procedures 
Preparations: 


To achieve the best adjustment results, warm up the camera 
for approximately 30 minutes before adjusting. 

To prevent short-circuits between the camera body and the 
undersides of the process and deflection circuit boards, 
place insulating tape on those portions of the circuit boards 
that may come in contact with the camera body. 


Note: 
All board drawings and adjustments are referenced to 
the foil side of the printed circuit board. 


[1] +9V ADJUSTMENT 


Cautions: 

Adjust the voltage to +9 volts. This adjustmert should al- 

ways be performed before any other camera adj sstments as 

voltage adjustment will affect overall camera adjustment. 

Unless complete camera alignment is to be periormed, it is 

not necessary to adjust the voltage if the errors less than 
+0.02 volts. 


1. To adjust the voltage to +9 volts, connecta voltmeter 
to the +9 volt regulator at test point TP%O5 on the 
deflection circuit board. 

2. Adjust +9V contro! VR6001 so that the volsneter indi- 
cates +9 volts + 0.01 volts. 


2-9 


(2) DEFLECTION CIRCUIT ADJUSTMENT 


ADJUSTMENT FLOW CHART OF DEFLECTION CIRCUIT (BOARD) 


[Confirm +9V Adjustment sid 
Fp 
L 3.58 MHz Subearrier Frequency Adjustment | 


Beam Current Adjustment 


Target Adjustment 


Bias Current Adjustment 


Optical Black Offset Adjustment 


Dark Shading Adjustment 


Vertical Edge Balance Adjustment 


Input Level, Auto Iris and NTSC Pedestal Adjustment 


v 


Back Focus Adjustment 


v 


Newvicon Turning (Adjustment of Newvicon Position) 


Y 


Vertical Centering and Vertical Size Adjustment 


Y 


Horizontal Linearity and Size Adjustment 


Y 


Confirmation of the Newvicon Turning Adjustment 


Y 


Horizontal Centering Adjustment (Clamp Pulse Timing) 


Y 


Confirm Beam Current Adjustment 


Y 


Red/Blue Signal Separation Adjustment (Coarse) 


v 


(2) 
[ (3) 
| (4) 
| (5) 
[ (6) 
| (7) 
{ (8) 
| (9) 
[ (10) 
| (11) 
| (12) 
[ (13) 
[ (14) 
[_(15) 
[ (16) 


Beam Alignment 


[ (17) 


Confirmation of Some Adjustments 


Y 


[ (18) 


Dynamic Focus Adjustment 


Y 


[ (19) 


Color Shading Adjustment 


Y 


Process Circuit Adjustment 


2-10 


Preparation: 


Preset the following. 


R/B Color Control Knobs 
(White Balance) 

. Center position (Detent position) 
Iris Control Switch 

. Manual and Close position 
Color Temperature Correction Switch 

Indoor position 

Standby Switch 

. Operate position 
Negative/Positive Reverse Switch 

. Normal position 


2. Release the Dynamic Focus. 


Note: 


For this procedure, use test point TP6O9 as the exter- 
nal trigger for the vertical adjustment, and test point 
TP610 as the external trigger for the horizontal ad- 


justment. This will ensure the flattest response. 


. Test Scope 
Te? Adj. Chart instrument Trigger 
TP6O7 VR611 / Scope TP609 
VR612 VSS 
VR613 TP610 
VR614 HSS 


First, with the iris control switch, set to the manual, 
and close the iris, then observe the signal at the hori- 


zontal rate at test point TP607. 


Trigger the oscilloscope with test point TP610. 


Adjust the horizontal sawtooth control VR611 and the 
horizontal parabola control VR612 so that the signal 
waveform is flattest during the horizontal period as 


shown in Fig. 1. 


Flattest 


1V 20usec 


Fig. 1 


Now, observe the signal at the vertical rate at test point 
TP607, and adjust the vertical parabola control VR613 
and the vertical sawtooth control VR614 so that the 
signal waveform is flattest during the vertical period as 
shown in Fig. 2. Trigger the oscilloscope with test 
point TP609. 


1V 5msec 


Fig. 2 


3. 


Release the color shading. 

Turn VR310, VR311, VR312, VR313, VR314, 
VR315, VR316 and VR317 to the center position as 
shown in Fig. 3. 


Metal ‘‘legs’’ 


(leads) of Center 
ee a Position 


variable 
qd) 


resistors 


Fig. 3 
4. Release the high luminance chroma clip circuit. 
Turn VR330 fully clockwise from the foil side of the 
circuit board. 
5. 3.58 MHz SUB-CARRIER FREQUENCY 
ADJUSTMENT 
. Test Scope 
TP Adj. Chart Instrument Trigger 
TP311 C346 / Frequency / 
Counter 
a. Measure the sub-carrier frequency at TP311. 
b. Adjust capacitor C346 so that the frequency counter 
indicates 3.579545MHz + 50Hz. 
(1) BEAM CURRENT ADJUSTMENT 
. Test Scope 
T Adj. Chart Instrument Trigger 
TP301 V R605 White Scope TP610 
TP604 Light HSS 
TP608 Box 
1. Set the iris control switch to auto. 
2. Connect the oscilloscope to test point TP301 and 
observe the signal at the horizontal rate. 
3. Connect a 33u/16V capacitor between TP604 and 
TP6O8. 
Trigger the scope using TP610. 
4. Aim the camera at the far left edge of a light box or 


other small light source in order to saturate the beam 
(waveform does not increase). 


2-12 


La Light Box 


Fig. 4 


Note: 
Use a low ambient room light when performing this 
procedure. If lighting is too high, then close the iris 
manually. 


5. Adjust the beam control VR605 so that signal clipping 
occurs at 2.0 volts peak-to-peak. (See Fig. 5.) 


ft 


2.0Vp-p 


Fig. 5 


If the signal is less than 2.0V peak-to-peak, use a more 
intense light source. 
Be careful not to damage the pick-up tube with too 
strong a light. 

6. Disconnect the 33u/16V capacitor. 


(2) TARGET ADJUSTMENT 


TP Adj. Chart | Test Scope 
Instrument Trigger 
TP603 VR603 / Voltmeter / 
Note: 


Before making any adjustments, wait 5 seconds after 
closing the lens to allow the dark current to stabilize, 


1. Set the iris control switch to the manual, and close the 
iris. 

2. Connect the voltmeter to test point TP603 on the de- 
flection circuit board. 

3. Wait 5 seconds after colsing the fens to allow the dark 
current to stabilize. 


4. Now adjust the target control VR603 so that the volt- 
age at TP6GO3 is equal to the Esj value stamped on the 
Newvicon neck plus 1V. 

(Voltage at TP603 = Esj value +1V) 


Newvicon 


Esj (Target Voltage) 


Fig. 6 


(3) BIAS CURRENT ADJUSTMENT 


. Test Scope 
Tp Adj. Chart Instrument Trigger 
TP301 VR606 / Scope TP609 
VSS 


1. Set the iris control switch to the manual, and close the 
iris. 

2. Connect the oscilloscope to test point TP301 and ob- 
serve the signal at the vertical rate. 
Trigger the oscilloscope with test point TP609. 

3. Adjust VR6OG so that the waveform level is 50mVp-p. 


20mV 5Smsec 


Fig. 7 


(4) OPTICAL BLACK OFFSET ADJUSTMENT 


1. Set the sensitivity (standby) switch to the gain up po- 
sition. 

2. Connect the oscilloscope to test point TP303 and ob- 
serve the signal at the vertical rate. 
Trigger the oscilloscope with test point TP609. 

3. Adjust the optical black offset control VR304 so that 
the waveform level is about OmVp-p. (Use center of 
carrier leakage.) 


| OmVp-p 


4 


—_ 


Fig. 8 


4. Set the sensitivity (standby) switch to the operate po- 
sition. 


(5) DARK SHADING ADJUSTMENT 


Note: 
Before starting this adjustment, set the iris control 
switch to manual and close the iris, and wait 10 sec- 


onds. 
TP Adj. Chart | Test Scope 
Instrument Trigger 
TP303 V R607, VR608 / Scope TP609 
VR609, VR610 VSS 
TP610 
HSS 


1. Set the sensitivity (standby) switch to the qin up posi- 
tion. 

2. Connect the oscilloscope to test point TP303 and ob- 
serve the signal at the vertical rate. 

Trigger the oscilloscope with test point TP6)9. 

3. Adjust the dark shading control (V. Para.), “R609 and 
the dark shading control (V. Saw.), VR610so that the 
signal waveform is flattest during the vertical period as 
shown in Fig. 9. 


j Test Scope 
TP Adj. Chart Instrument Trigger 
TP303 VR304 / Scope Ves. 
VSS 
Note: 


Before starting this adjustment, set the iris control 
switch to the manual and close the iris, and wait 10 
seconds. 


2-13 


4. Now, observe the signal at the horizontal rate at test 
point TP303, and adjust the dark shading control (H. 
Saw.), VR607 and the dark shading control (H. Para.), 
VR608 so that the signal waveform is flattest during 
the horizontal period as shown in Fig. 10. 

Trigger the oscilloscope with test point TP610. 


Fig. 10 


5, Check the optical black offset adjustment and, if nec- 
essary, readjust the optical black offset control VR304. 

6. Set the sensitivity (standby) switch to the operate posi- 
tion. 

7. Finally, set the iris control to auto. 


(6) VERTICAL EDGE BALANCE ADJUSTMENT 


Test Scope 

TP Adj. Chart Instrument Trigger 
TP313 VR332 Gray Scope TP6O9 
YL Bias Scale vss 
Signat Control TP610 
TP312 VR333 HSS 
V-Edge V-Edge 
Correction Gain 
Signal VR334 

V-Edge Bal. 


1. Aim the camera at the gray scale chart. 

2. Connect the oscilloscope to test point TP313 and ob- 
serve the signal at the horizontal rate. 
Trigger the oscilloscope with test point TP610. 

3. Adjust the bias control, VR332, so that the YL signal 
is Maximized, as shown in Fig. 11. 


2-14 


Isat | fe 


Maximum 


= Ty 
a 


Fig. 11 


4. Then, connect the oscilloscope to test point TP312 and 
observe the vertical edge correction signal at the verti- 
cal rate. 

Trigger the oscilloscope with test point TP609. 

5. Adjust the vertical edge balance control VR334 so that 
the vertical edge correction signal is minimized, as 
shown Fig. 12. 


Set Minimum 


Good 20mV 2msec 


Fig. 12 Vertical Edge Correction Signal at TP311 


6. Observe the picture on the monitor and adjust Vertical 
Edge Gain Control! VR333 until the color fringing on 
the upper and lower edges of the gray scale is elimi- 
nated. (Coarse) 


(7) INPUT LEVEL, AUTO IRIS AND NTSC 
PEDESTAL ADJUSTMENT 


TP Adj. Chart | Test Scope 
Instrument Trigger 
TP301 VR301 Gray Scope TP610 
TP302 VR302 Scale HSS 
TP318 V R330 
V R604 
Note: 


If a reflection type gray scale chart is used, a light in- 
tensity of between 1,400 and 2,000 lux will be re- 


quired. 


1. Aim the camera at the gray scale chart and set iris con- 


trol to “Auto”. 

2. Connect the oscilloscope to test point TP301 and ob- 
serve the signal at the horizontal rate. 

Trigger the oscilloscope with test point TP610. 

3. Then to release the carrier signal, turn focus control 
VR604 fully clockwise (from foil side of the circuit 
board). 

4. Adjust VR301 to GOOmVp-p. 


TP301 


4 


600mVp-p 


| 


Fig. 13 


5. Connect the oscilloscope to test point TP302 and ob- 
serve the signal at the horizontal rate. 

6. Adjust the focus control VR604 so that the signal level 
is maximized, 

7. Set iris control to manual and close the lens iris. 

8. Connect the oscilloscope to test point TP318 and ob- 
serve the NTSC signal. 


2-15 


9. Check the NTSC pedestal as shown in Fig. 14. 

If NTSC Pedestal is not proper level, readjust the OB 
offset adjustment (step 4), dark shading adjustment 
(step 5), vertical edge balance adjustment (step 6) if 
necessary. 


NTSC Signal 


IIIA AUC 


Fig. 14 
11. Set iris control to auto and aim the camera at the gray 
scale chart. 
Now, observe the NTSC signal at the horizontal rate at 
test point TP318. 
Turn VR330 fully counterclockwise position, to re- 
duce the carrier signal. 
Adjust VR302 to 0.7Vp-p. 
Turn VR330 fully clockwise. 
Confirm that signal at TP301 is G(00mVp-p. 
If it is not then readjust. 


12. 
13. 
14. 


15. 
16. 


NTSC Signal 


0.7Vp-p 


Fig. 15 


(8) BACK FOCUS ADJUSTMENT 


1. Aim the camera at an object more than 10 meters (33 
feet) away, and zoom all the way in (maximum close 
up). 

2. Focus the lens on the object. 

3. Loosen the hex screw using a 1.5mm hex wrench on 
the relay lens. (See Fig. 16.) 


Hex Screw 


. Newvicon Yoke 
Ut / 


— t 


—— 


— fel 


ane 


a 


© ox 


WA = 

Relay Lens Slide Screw 

Fig. 16 

4. Zoom all the way back and adjust the relay lens slide 
screw until the sharpest focus is obtained. 

5. Repeat this procedure--zoom in, focus, zoom out, and 
adjust--until the best focus is obtained over the entire 
zoom range. 

6. Tighten the hex screw using a 1.5mm hex wrench on 
the relay lens. 

Do not overtighten the hex screw. 
You may crack the lens assembly or the lens housing. 

(9) NEWVICON TURNING 
(ADJUSTMENT OF NEWVICON POSITION) 
qm. Adj. Chart Instrument Troet 

TP302 V R604 White Scope TP609 
Newvicon VSS 
Turning 

1. Aim the camera at a white chart or white screen and 
focus the lens. 

2. Connect the oscilloscope to test point TP302 and ob- 
serve the signal at the vertical rate. 

Trigger the oscilloscope with test point TP609. 

3. Adjust Focus Control VR604 for maximum signal level 

as shown in Fig. 17. 


\ J LE 
7 


Maximum Level 


Fig. 17 


2-16 


Delay the sweep of the center portion of the vertical 
signal waveform and observe a few horizontal lines. 
Loosen the newvicon clamp screw on the deflection 
yoke assembly as shown in Fig. 18. 


Newvicon Clamp Screw 


my 


— a 


———— 


Fig. 18 


Remove the rear panel, unscrew two screws and re- 
move the rear side circuit board. 

Now, rotate the newvicon socket from the back, using 
a 7mm hex wrench, so that the waveform for each ho- 
rizontal scan line is free from beat and ripple. 

Do not worry about differences in amplitude. 


Beat 


HIE - (HH 


Before Adj. After Adj. 


0.5V 2msec 


Fig. 19 Waveform of Proper Newvicon Turning 


Newvicon Socket 


Hex Wrench (7mm) Wrapped 
With the Insulating Tape. 


Fig. 20 


Note: 
Be careful not to touch the connector on the new- 


vicon. The high voltage at the connector may give you 
a severe shock and perhaps damage the newvicon. 


8. Finally, tighten the newvicon clamp screw. And put 
rear side circuit board back in the rear side, screw two 
screws. 


(10) VERTICAL CENTERING AND VERTICAL SIZE 
ADJUSTMENT 


. Test Scope 
T Adj. Chart Instrument Trigger 
TP302 VR602 White Scope TP609 
5.0OMHz V. Size vss 
Carrier VR601 
V. Cent 


Aim the camera at a white chart. 

Connect the oscilloscope to test point TP302 and ob- 
serve the vertical interval of the 5.0MHz carrier signal. 
Trigger the oscilloscope with test point TP609. 


3. Adjust the vertical size control, VR602, so that the 
beat in the signal is minimized. These beats will appear 
if the vertical size is not properly adjusted. Properly 
adjusted, there should be a maximum of one beat per 
envelope. 

Before Adj. 
0.2V 2msec 
After Adj. 
0.2V 2msec 
Fig. 21 

4. Now aim the camera at a small object so that the ob- 
ject is in the center of the monitor screen. 

5. Adjust the vertical center control, VR601, so that the 


small object does not shift vertically as you zoom in 
and out. 


(11) HORIZONTAL LINEARITY AND SIZE 


ADJUSTMENT 
. Test Scope 
TP Adj. Chart Instrument Trigger 
TP302 VR615 White Scope TP610 
5.0MHz H. Size FM HSS 
Carrier VR616 Detector 
Compsite H. Lin. (1) 
Blanking L603 
H. Lin. (2) 


1. Aim the camera at a white chart or white screen. 

2. Check the focus adjustment and, if necessary, re- 
adjust Focus Control VR604. 

3. Turn the FM detector knob to the Horizontal Size and 
Linearity position. 

4. Turn the switch on the rear panel to the 5.0MHz posi- 
tion. 


FM Detector Knob 


Fig. 22 FM Detector 


5. Connect the FM detector input to test point TP302, 
and connect the FM detector output to the oscillo- 
scope input. 

Connect the FM detector blanking to test point TP309. 
Connect the FM detector +9V line to test point TP6O5. 
Connect the FM detector ground to the camera 


ground. 
Camera 
Preamp FM Detector +9V 
TP302 O——-}-O Oo+——O 
Input TP605 
Camera 
BLK © L_¢>) Output oT 2 
TP309 2 
—___] 
Oo 
©) 
Oscilloscope ° 
Input © 
__ 


Fig. 23 Connection of FM Detector 


6. Now, adjust the horizontal size control VR615, so that 
the signal is centered on the blanking line, as shown in 
Fig. 24. 

Trigger the oscilloscope with test point TP610. 


(a) Before Adjustment Blanking Line 


1H. Period — 


5.0MHz Carrier Signal 
(b) After Adjustment 


Fig. 24 Waveform of Proper Adjustment 


7, Finally, adjust the horizontal linearity 1 control 
VR616, and the horizontal linearity 2 control, L603, 
so that the waveform on the oscilloscope is as flat as 
possible. Horizontal Linearity 1 controls the horizontal 
sweep for the left side of the picture, while Horizontal 
Linearity 2 controls the overall linearity. 


(12) CONFIRMATION OF THE NEWVICON 
TURNING ADJUSTMENT 


Check the newvicon turning adjustment and adjust it if 
necessary. If the adjustment is correct, go onto the next 
procedure, step (13). 


(13) HORIZONTAL CENTERING ADJUSTMENT 
(Clamp Pulse Timing) 


. Test Scope 
le Adj. Chart Instrument Trigger 
TP301 VR617 White Scope “TP610 
Preamp H. Cent. HSS 
Output 
TP308 
CP1 


2-18 


1. Aim the camera at a white chart. 

2. Next, connect an oscilloscope probe to test point 
TP301 and observe the horizontal blanking interval of 
the signal. 

Trigger the oscilloscope with test point TP610. 

3. Connect the other oscilloscope probe to the clamp 

pulse 1 (CP1) test point, TP308. 

Set the oscilloscope in the delay mode. 

5. Adjust the horizontal centering control, VR617, so 
that the time between the trailing edge of the video 
signal, in other words, the front porch of the optical 
black, and the leading edge of the clamp pulse 1 sig- 
nal (TP308) is 1.5sec. as shown in Fig. 25. 


- 


CP1 


Front Proch 


1.5us 


TP301 


TP308 


Tusec 


Fig. 25 Waveform for H. Cent. 
(H. Blanking Signal at TP301 and CP1) 


Note: 

With some newvicons, the oscilloscope display will 
show a double trace at the end of a horizontal line. If 
this should occur, reconfirm the newvicon turning ad- 
justment. If the newvicon adjustment is correct, adjust 
the horizontal centering control VR617 so that the 
time between the trailing edge (a) of the video signal 
and the leading edge of the clamp pulse 1 signal is 1.5 
psec. 


Video Signal 


CPi 


Fig. 26 


(14) CONFIRM BEAM CURRENT ADJUSTMENT 


If the target adjustment is made, check and readjust the 
beam current (step 1) if necessary. 

If the adjustment is correct, go on to the next procedure, 
step (13). 


(15) RED/BLUE SIGNAL SEPARATION ADJUST- 
MENT (COARSE) 


. Test Scope 
TP Adj. Chart Instrument Trigger 
TP306 V R305 Gray Scope TP610 
Blue Signal VR309 Scale HSS 
VR303 White 
VR337 
A VR305 
A VR309 A 
VR337 
@ TP306 
AVR303 


PROCESS CIRCUIT BOARD 


= 


Aim the camera at the gray scale chart. 

2. Connect the oscilloscope to test point TP3)6 and ob- 
serve the blue signal. 

Trigger the oscilloscope with test point TP61D. 


Alternately adjust the two red & blue separation 
controls, VR305 and VR309 to minimize the flicker. 
Aim the camera at a white chart. 

Then, alternately adjust VR303 and VR337, so that 
the white area in the monitor picture is maximized. 


(16) BEAM ALIGNMENT CU. Gace 
Ri bec ta,.§ uS Cw Pals py iC —™ - 
v 
. Test Scope 
TP Adj. Chart Instrument Trigger 
TP316 Two White Color TP610 
Alignment Monitor HSS 
Rings Scope 
VR337 
V R604 


Aim the camera at an evenly illuminated white surface 
(use 1,500 lux or light box) and focus the lens. 

Adjust VR337 so that the TV monitor picture is red- 
dish. 

And adjust the focus control VR604, so that the 
magenta area in the monitor picture is maximized and 
the green area is minimized. 

Cut the lock paint on the alignment rings before at- 
tempting to rotate the rings. 


Alignment Rigns 


Fig. 27 


5. Connect the oscilloscope to test point TP316 and ob- 
serve the R-Y signal at the horizontal rate. 

Trigger the oscilloscope with test point TP610. 
Observe the raster on the TV monitor, and adjust the 
two alignment rings (See Fig. 27.) so that the signal 
level is minimized and the magenta color covers the 
whole screen as shown in Fig. 28. 


2-20 


Note: 


You may observe discoloration at the edges and cor- 
ners, 

Disregard this as the Dynamic Focus adjustment pro- 
cedure will clean this up. 


No Good 


Fig. 28 TV Screen 


Paint-lock the alignment rings with either white paint 
or lacquer. 


(17) CONFIRMATION OF SOME ADJUSTMENTS 


Check some items as shown below. 
Vertical Centering and Vertical 
(step 10) 

Horizontal Centering and Horizontal Size adjustment. 
(step 11,13) 
Dark Shading adjustment. (step 5) 


Size adjustment. 


(18) DYNAMIC FOCUS ADJUSTMENT 


Test Scope 
TP Adj. Chart Instrument Trigger 
TP316 VR611 White Scope TP609 
R-Y Signal H. Saw. vss 
VR612 Color TP610 
H. Para. Monitor HSS 
VR613 
V. Para. 
VR614 
V. Saw. 


= 


Aim the camera at a white chart. 

Observe the color monitor and adjust the focus con- 
trol, VR604, so that the center area of monitor shows 
a red (magenta) color (minimize green color), if neces- 
sary. 


3. Connect the oscilloscope to test point TP316 and ob- 
serve the R-Y signal at the horizontal rate. 
Trigger the oscilloscope with test point TP610. 

4. Alternately adjust vertical parabola control, VR613 
and vertical sawtooth control, V R614 so that the signal 
level is minimized as shown in Fig. 29. 


Cr oi 
100mV 10usec - / 
HL. rate ° C2 ap 


Fig. 30 Waveform of TP316 


6. Check the color TV monitor for green tinting in the 


Before Adj. corners and at the sides. In most cases, the green tint- 
100mV 10sec ing will be eliminated by these adjustments, 
V. rate 7. If, however, there is still some green tinting present, 


fine-adjust the alignment rings on the newvicon until 
the green tinting is completely eliminated. 


(19) COLOR SHADING ADJUSTMENT 


. Test Scope 
7. Adj. Chart Instrument Trigger 
TP316 VR314 White Scope TP610 
R-Y Signal VR315 Color Hss 
VR316 Monitor 
VR317 
. TP317 VR310 
After Adj. AL SB B-Y Signal VR311 
100mV 10usec Jl Y VR312 
V. rate VR313 
Fig. 29 Waveform of TP316 
5. Then, alternately adjust horizontal sawtooth control, 1. Aim the camera ata white chart of a light bo x. 
VR6@1 and horizontal parabola control, vR6eg2 for If a reflection chart 's used, a light intensity of about 
the signal waveform to be flattest during the horizon- 4,000 lux will be required. 
tal period as shown in Fig. 30. Next, confirm that the R/B color control kiobs set the 


center position. 

2. Connect the oscilloscope to test point TP!#6 and ob- 
serve the R-Y signal at the horizontal rate. 
Trigger the oscilloscope with test point TPaO. 

3. Alternately adjust VR314 and VR315 so frat the sig- 
nal level is minimized as shown in Fig. 31. 


2-21 


100mV 10usec 
V. rate 


Fig. 31 Waveform of TP316 


4. Then, alternately adjust VR316 and VR317 for the 
signal waveform to be flattest during the horizontal 
period as shown in Fig. 32. 


100mV 10sec 
H. rate 


Fig, 32 Waveform of TP316 


5. Now connect the oscilloscope to test point TP317 and 
observe the B-Y signal at the horizontal rate. 
Trigger the oscilloscope with test point TP610. 

6. Alternately adjust VR310 and VR311 so that the sig- 
nal level.is minimized as shown in Fig. 33. 


2-22 


100mV 10usec 
V. rate 


Fig, 33. Waveform of TP317 


7. Then, alternately adjust VR312 and VR313 for the 
signal waveform to be flattest during the horizontal 
period, as shown in Fig. 34. 


100mV 10usec 


Fig. 34 Waveform of TP317 


[3] PROCESS CIRCUIT ADJUSTMENT 


ADJUSTMENT FLOW CHART FOR PROCESS CIRCUIT 


(1) 


Color Gamma Circuit Release 


Y 


(2) Red/Blue Signal Separation Adjustment 
7 
[ (3) Carrier Balance Adjustment 
Y 
(4) Rand B Gain, Gamma Reference Voltage Adjustment 
Y 
(5) Rand B Gamma Adjustment 
Y 
| (6) White Balance Fine Adjustment 
Y 
| (7) High Luminance Chroma Clip Adjustment | 
Y 
(8) Confirmation of the NTSC Pedestal Adjustment 
Y 
(9) Vertical Edge Gain Adjustment 
Y 
| (10) C.Y. Timing Adjustment | 
(11) Color Signal Adjustment 
Y 
(12) Confirmation of Resolution 
| (13) AWC (Automatic White Balance Control) Adjustment | 
Y 
| (14) Full AWC (Automatic White Balance Control) Adjustment | 
Y 
(15) Low Chroma Saturation Clip Adjustment 


Preparation: 


The process circuit requires several preadjustments before 
any actual adjustments can be made. 


1. Set the R and B color control knobs to the center, or 
detent position. 

2. Next, set the iris control switch to the auto position. 

3. Set the color temperature correction switch to the in- 
door position (mark: lamp). 

4. Set the negative/positive reverse switch to the positive 
side. 

5. Finally, set the standby switch to the operate position. 


2-23 


A test pattern light box will be required for several of the 
adjustment procedures. 

Be sure that the AC voltage (115 125V) for the light box 
is correct and that you are using the correct pattern for 
each procedure. 

If the reflection chart is used, the following light condition 
is required, 


Color Temperature: 3200°K 

Light Intensity: 1,400 v 2,000 lux 

(on the chart surface) 

Make sure that the correct pattern is used for each 
step. 


(1) COLOR GAMMA CIRCUIT RELEASE If the blue signal from test point TP306 has red contami- 


nation, the waveform will be unstable and have changing 


Turn VR328 counter clockwise and turn VR318, VR319, 
VR320, VR321, VR322, VR323, VR324 and VR325 to 
the center position as shown in Fig. 35. 


amplitude. 


(3) CARRIER BALANCE ADJUSTMENT 


Metal ‘‘legs’’ 
(leads) of _ Test 5 
. Center Position ; es cope 
variable _. a TP Adj. Chart Instrument Trigger 
resistors TP318 VR326 Gray Vector TP610 
VR327 Scale Scope HSS 
1. Aim the camera at the gray scale chart. 
2. Then, connect the vectorscope to test point TP318. 
3. Alternately adjust the carrier balance controls, VR326 
; and VR327 so that the carrier balance point is in the 
Fig. 35 center of the vector screen. 
Note: 


(2) RED/BLUE SIGNAL 


Adjust each potentiometer from the foil side of circuit 
board. 


SEPARATION ADJUSTMENT 


N= 


(4) R AND B GAIN, GAMMA REFERENCE VOLTAGE 


ADJUSTMENT (WHITE BALANCE ADJUSTMENT) 


. Test Scope 
m7? Ad). Chart Instrument Trigger 
TP Adi ch Test Scope 
5. art Instrument Trigger TP318 VR306 Gray Scope TP610 
TP306 V R305 Gray Scope TP610 NTSC VR337 Scale HSS 
Blue VR309 Scale HSS Signal VR303 
Signal TP305 
Note: 


Set iris control to “Auto”. 
Aim the camera at the gray scale chart. 
Connect the oscilloscope to test point TP306 and ob- 


Before proceeding with this adjustment, preset the 
follwoing camera controls. 


serve the blue signal. a. Set the R and B color contro! knobs to the center, or 
Trigger the oscilloscope with test point TP610. detent position. . _ 
4. Alternately adjust the two red & blue separation con- b. Set the iris control switch to the auto position. 
trols, VR305 and VR309 to minimize the flicker. c. Set the color temperature correction switch to the in- 
door position (lamp side). 
1. Aim the camera at the gray scale chart. 
2. Connect the oscilloscope to the test point TP305 and 
observe the signal at the horizonta! rate. 
Trigger the oscilloscope with test point TP610. 
3. Adjust the gamma reference voltage control, VR306, 
so that the signal is clipped at the sixth step from the 
bottom as shown in Fig. 37. 
4. Set the AWB selector switch to the full auto position 


Fig. 36 Blue Signal 


2-24 


momentarily and return to the AWB position. 
Then, confirm the view minder display so that AWB is 
flashing “PUSH”. 


r 4 . : 
J The Signal is L 


r Clipped at the Six Step 7 


4 


Fig. 37 


Then, connect the oscilloscope to test point TP318 and 
observe the NTSC signal! at the horizontal rate. 

Trigger the oscilloscope with test point TP610. 
Alternately adjust the red gain control VR337, and the 
chroma gain control VR303, to minimize the carrier 
leakage at the fourth step through the eighth step 
from the bottom. 


Fig. 38 NTSC Signal 


(5) R AND B GAMMA ADJUSTMENT 


2-25 


(WHITE BALANCE ADJUSTMENT) 


Scope 
Trigger 


Test 


TP 
Instrument 


Adj. Chart 


VR325 
R-Gamma 1 
VR321 
B-Gamma 1 
VR324 
R-Gamma 2 
VR320 
B-Gamma 2 
VR323 
R-Gamma 3 
VR319 
B-Gamma 3 
VR322 
R-Gamma 4 
VR318 
B-Gamma 4 


TP610° 
HSS 


Gray Scope 


Scale 


TP318 
NTSC 
Signal 


N= 


Aim the camera at the gray scale chart. 

Connect the oscilloscope to test point TP318 and ob- 
serve the NTSC signal at the horizontal rate. 

Trigger the oscilloscope with test point TP610. 

Adjust Red Gamma 1 Control, VR325 and Blue 
Gamma 1 Control, VR321 until the carrier leakage 
from the bottom through third steps is minimized. 
Alternately adjust the red gain control VR337, and the 
chroma gain control VR303, to minimize the carrier 
leakage at the fourth step through the eighth step from 
the bottom. 

Adjust Red Gamma 2 Control VR324 and Blue 
Gamma 2 Control VR320 until the carrier leakage 
from third through fifth step from the top is mini- 
mized. 

Then, adjust Red Gamma 3 Control VR316 and Blue 
Gamma 3 Control VR312, unti! the carrier leakage 
from the first through third step from the top is 
minimized, 

Set the iris control switch to manual, and open the iris 
a little. 

Adjust Red Gamma 4 Control VR322 and Blue 
Gamma 4 Control VR318, until the carrier leakage 
from the first through third step from top is mini- 
mized. 


Fig. 39 NTSC Waveform 


It is normal to have some residual carrier leakage, par- 
ticularly at the top steps of the waveform. 

It is normal condition that the level of minimized 
waveform is unstable depending on the characteristic 
of the newvicon. 


(6) WHITE BALANCE FINE ADJUSTMENT 


Repeat (4) R and B gain adjustment and (5) R and B 
gamma adjustment. 


(7) HIGH LUMINANCE CHROMA CLIP ADJUSTMENT 


. Test Scope 
Adj. 
7m } Chart Instrument Trigger 
/ VR330 Gray Color / 
H. C. Gain Scale Monitor 


1. Aim the camera at the gray scale chart and observe the 
picture on the TV monitor. 

2. Next, zoom out to 12mm and check the high lumi- 
nance part of the scale, from the whitest step to the 
fourth step from white. 

The picture should be whitish-gray. 

3. If, however, the picture has a green or yellow cast, 
adjust the High Luminance Chroma Clip Gain Control 
VR330, until the cast is eliminated and the picture is a 
normal whitish-gray. 


2-26 


High Luminance Parts Should Show no 
Color When Adjustment by VR330. 


\ 


Fig. 40 


(8) CONFIRMATION OF THE NTSC PEDESTAL 
ADJUSTMENT 


Check NTSC pedestal adjustment and NTSC signa! level ad- 
justment, step (7) (See deflection circuit adjustment flow 
chart.), and adjust it if necessary. 

If the adjustment is correct, go on to the next step. 


(9) VERTICAL EDGE GAIN ADJUSTMENT 


. Test Scope 
1? Adj. Chart Instrument Trigger 
/ VR333 Gray Color / 
V. Edge Scale Monitor 
Gain 


— 


Aim the camera at the gray scale chart. 

2. Observe the picture on the monitor and adjust Vertical 
Edge Gain Control VR333 until the color fringing on 
the upper and lower edges of the gray scale is elimi- 
nated. 


Minimum Color 
Frisiging 


Fig. 41 Picture of Gray-Scale 


(10) C. Y TIMING ADJUSTMENT 


Aim the camera at the gray scale chart. 

Observe the picture on the monitor and adjust VR307 
until the color fringing on the right and left of the gray 
scale is eliminated. 


Minimum Color Fringing 


Fig. 42 Picture of Gray-Scale 


(11) COLOR SIGNAL ADJUSTMENT 


Test Scope 


te Adj. Chart Instrument Trigger 


TP318 VR308 Color Vectorscope / 
NTSC Color Gain Bar 
Signal VR329 Chart 
R-Y Gain 
VR331 
BF Phase 
C348 

B-Y Phase 


Note: 


= 


Before beginning this adjustment, check to see that the 
AWB of view minder display grows “OK”, 

If it doesn’t, adjust white Balance Control until it 
grows “OK”. 


Aim the camera at the color bar chart. 

Connect the vectorscope to test point TP318. 

Set the vectorscope to ‘’Vector’’ mode and observe the 
color vector. 

Adjust the color gain control VR308, so that the am- 
plitude of the YL signal is 1.2 times the amplitude of 
the burst signal. 

Adjust the R-Y gain contro! VR329, so that the am- 
plitude of the red signal is 1.5 times the amplitude of 
the burst signal. 

Adjust the burst flag phase contro! VR331, (BF Phase), 
so a the vector phase of the red signal is 104° (415° 
—1 


7. Adjust the B-Y phase control C348 so that YL signal is 
168° (+10°—30} . 

8. Adjust the total amplitude and the total phase with 
VR308, VR329, VR331 and C348 to be within specifi- 
cation as shown in chart-1. 

9. Turn the negative/positive reverse switch to the nega- 
tive side, and check the color signal. 


Specification: 


1) Phase 
Signal Vector Phase Adj. 
R 104° + 15° VR331 
YL 168° "0. C348 
2) Amplitude 


a. The amplitude of R signal is 1.5 times 
the burst signal. 

b. The amplitude of YL signal is 1.2 times 
the burst signal. 


Chart-1. 


(12) CONFIRMATION OF RESOLUTION 


1. Shoot the Resolution Chart. 
Frame it completely. 

2. While viewing the Resolution Chart on the EVF con- 
firm that the horizontal resolution is approximately 
300 lines. 


(13) AWC (AUTOMATIC WHITE BALANCE CONTROL) 


ADJUSTMENT 
. Test Scope 
TP Adj. Chart Instrument Trigger 
TP318 VR335 White Vectorscope / 
NTSC VR336 
Signal 


= 


Aim the camera at a white chart. 

2. Set the AWB selector switch to the full auto posi- 
tion momentarily and return to the AWS Position. 

3. Confirm the view minder display so that ANWB is flash- 

ing “PUSH”. 


2-27 


4. Connect the vectorscope to test point TP318, and then 

set the vectorscope to the ‘’Vector” mode. 

Then, press the WB button. 

6. Observe the vectorscope screen, and alternately adjust 
the automatic white balance controls VR335, VR336 
so that the white balance point is in the center of the 
vectorscope screen. 

7. Then, press the WB button, check the view minder dis- 
play so that AWB grows “OK”. 

8. Set the color temperature correction switch to the out- 
door position (mark: sun) and press the WB button. 

9. Confirm the view minder display so that AWB grows 
“BLUE” or “RED” (3200°K). 


on 


(14) FULL AUTOMATIC WHITE BALANCE CONTROL 
ADJUSTMENT 
TP Adj Chart | Test Scope 
. Instrument Trigger 
TP318 VR339 White Vectorscope J 
NTSC VR340 
Signal 
1. Set the AWB selector switch to the full auto position. 


N 


Aim the camera at a white chart. 

3. Connect the vectorscope to test point TP318 and set 
the vectorscope to the ““Vector’’ mode. 

4. Then, alternately adjust VR339 and VR340 so that the 

white balance point is in the center of the vectorscope 

screen, 


(15) LOW CHROMA SATURATION CLIP ADJUSTMENT 


. Test Scope 
P 
q Adj. Chart Instrument Trigger 
TP310 VR328 Gray Scope TP610 
Scale HSS 


= 


Aim the camera at the gray scale chart. 
2. Adjust the white balance by R and B controls. 
3. Connect the oscilloscope to test point TP310 and ob- 
serve the signal at the horizontal rate. 
Trigger the oscilloscope with test point TP610. 
4. Adjust VR328 until the clipped line appears on the 
waveform as shown in Fig. 43. 


2-28 


(a) Before Adjustment 


(b) After Adjustment 


Fig. 43 


5. Aim the camera at a normal object, and confirm that 
the low chroma saturation clip is correct. 

[4] ELECTRONIC VIEWFINDER CIRCUIT 

Preparation: 


Connect the viewfinder connector to the EVF connector on 
the camera head. 


(1) H-OSC ADJUSTMENT 


1. Turn the power switch on. 

2. Aim the camera at the test pattern. 

3. Short pin-1 and pin-2 of connector P607 useing a jum- 
per. 


Connect the oscilloscope to pin-19 of IC603 and 
measure the voltage (V1) of pin-19. 

Then, disconnect the jumper and adjust VR618 so that 
the osciloscope indicates V1+1.0 (—O, +0.1) V. 


(2) FOCUS 

1. Aim the camera at the registration chart. 

2. 1f the focus on viewfinder is improper but the picture 
on the monitor is OK, adjust VR903. 

(3) HORIZONTAL AND VERTICAL CENTERING 
ADJUSTMENT 

1. Aim the camera at the registration chart. 

2, Adjust the centering coil assembly so that the horizon- 
tal and vertical picture is proper condition. 

(4) HORIZONTAL AMPLITUDE ADJUSTMENT 

1. Aim the camera at the gray scale chart. 

2. Adjust the horizontal amplitude control L904 so that 
the picture on the EVF is same as picture on TV 
monitor. 

(5) VERTICAL AMPLITUDE ADJUSTMENT 

1. Aim the camera at the gray scale chart. 

2. Adjust the vertical amplitude control VR620 as shown 
in Fig, 44. 

—— 
—_— 
= > om 
——— 
Before Adjust After Adjust 
Fig. 44 

(6) IRIS INDICATOR ADJUSTMENT 

1. Aim the camera at the gray scale chart. 

If a reflection type gray scale chart is used, a light in- 
tensity above 1,000 lux will be required on the chart 
surface. 

2. Set the iris control switch to auto. 

3. Adjust VR619 so that the iris indicator is in the center 


position. 


2-29 


(7 


— 


BRIGHT ADJUSTMENT 


1. Aim the camera at the gray scale chart. 

2. Adjust VR902 so that the picture on the EVF is proper 
condition. 

[5] CAMERA REMOTE CONTROL CIRCUIT 

(1) SYSTEM CLOCK ADJUSTMENT 

1. Connect the frequency counter probe to TP702. 

2. Adjust VR701 so that the frequency counter indicates 
255KHz+5KHz. 

3. Connect the frequency counter prove to TP612. 

4. Adjust VR621 so that the frequency counter indicates 
250KHz + 10KHz. 

(2) CRYSTAL OSCILLATION FREQUENCY 
ADJUSTMENT 

1. Connect the frequency counter probe to TP701. 

2. Adjust C703 so that the frequency counter indicates 
32.768KHz + 1KHz. 

(3) DISPLAY POSITION ADJUSTMENT 

1. Connect the camera with VCR (FP, FO, FE series). 

2. Turn the power switch on. 

Set the VCR/CAMERA switch to the CAMERA posi- 
tion. 

3. Adjust VR6002 (on the A.V.R C.B.A) so that the 
characters (exept VCR information) are displayed as 
shown below, (a=b) 

a | 1 b 
— le—— —_ 
{INDOOR 
| AWB = =-—7-7- PUSH | 
ILIGHT 2 = -—-—T-O LOW | 
[FOCUS = -—— -MANUAL| 
;GAIN = --———- STD! 

'REC 2 2 20-— 77: 0:00:00: 
IBATTERY ~———— E--- F 
'COUNTER -———- M1234! 


Fig. 45 E.V.F 


4. Then, adjust VR702 so that the characters (VCR infor- 
mation) are displayed as shown below. 


REC —---— 0:00:00 
BATTERY ~--~ E-~F 


Fig. 46 VCR Information Display 


2-30 


Auto Focus Servicing Tools List 


Auto Focus Jigs Set 
Precision Driver 
Diffusion Cap 
Infrared Ray Detect Camera 
Auto Focus Lens Adjustment Driver 


Infrared Ray Position Chart (12) 
Gray Chart 


Auto Focus Lens Adjustment Procedures 
(1) Removal of Auto Focus Lens Side Covers 


1. Move the shoulder slide to the rear. 
Then, press the portion (A) and move the shoulder 
slide to the rear as shown in Fig. 1-A. 
Unscrew 2 screws (B) (see Fig. 1-B). 


Screw (D) 
Screw (B) 


(B) 


Fig. 1 


Then, unscrew 2 screws (rear side) and remove the left 
and right side covers. (refer to section ‘Disassembly 
Method). 

Unscrew 2 screws (C) (see Fig. 2-A/B). 


2-31 


Le eee eee eee es VFKWO0006 


VFKWOO06A 


ec VFKWOO06B 
Le eee eee eee VFKWOOO06C 


VFKWOO006D 


rr VFKWO0008 
Se ee ee ee ED VFKWO0009 


Screw (C) 


Screw (C) 


He 


CBA Process C.B.A 


Deflection ® 


(A) Right Side 


(B) Left Side 


Fig. 2-(A), (B) 


Unscrew 3 screws (D) and remove the shoulder assem- 
bly from the camera head (see Fig. 1-B). 

5. Unscrew 6 screws and remove both AF side covers 
(refer to section ‘‘Replacement of the Power Zoom 
Lens’’). 


(2) Infrared Light Emitting Diode (IR-LED) 
Position Adjustment 
Note: We recommend that infrared light emitting diode 


position adjustment is performed in the dark room. 


1. Set the camera and the infrared ray positon chart as 
fotlows. 


Center of Circle AF Lens 
mn 
90° 
Infrared Ray 
Position Chart aa, 


Infrared Ray Position Chart 


4 


Infrared Ray Detect Camera 


TV monitor (A} 


Coior Camera 
needed the adjustment 


The center point of the 
infrared ray position chart 

rl must be located on the center 
> of the TV monitor. 


b> 


TV monitor (B) 


{b) 


2. Connect the read wire to pin 9, 10, 11,16, 32 of 
HIC6552 on Auto Focus (A) Circuit Board. (Refer to 
Fig. 5.) 


Auto Focus (A) Circuit Board \ Pin 32 
L 


‘sovenoooonottooonog HIC6552 


Ping ——™ A-B signal 
Pini0Q ——~ SZ 
[ Pint1——™_ INT 

Pin 16 ——™ Ground 


Pin 32 ——~ A+B signai 


f etpnop qguouonay 


{ if | \ \ 
Pin 16 (Ground) Ping 
Read wire Pin 10 


Pin 11 


Fig, 3 Color Camera Setting Condition 


2. Aim the camera at the infrared ray position chart and 
observe the picture on the TV monitor (B). 

The center point of the infrared ray position chart 
must be located on the center of the TV monitor 
screen. 

3. Then, aim the infrared rays detect camera at the infra- 
red ray position chart and ovserve the picture on the 
TV monitor (A). 

4. And adjust the LED horizontal position and LED verti- 
cal position so that the infrared ray is hit the circle 
($110) as shown in fig. 1-(b), TV monitor (A). 
(Irradiated position is jess than the circle (110). 


This LED is fixed by the adhesive agent. 


Fig. 5 Auto Focus (A) Circuit Board 


3. Cover the distance detection window (receiver side) 
with the thick black paper as shown in Fig. 6. 


~*— Thick Black Paper 
Returned 


Infrared c> 
Ray 


C] 


LITT TT TTT 


LIL TTT TTT 
U I 


Fig. 4 LED Position Adjustment 


(3) Offset Adjustment 


1. Remove the A.F Cover (A) and (B) (refer to section 
“‘Removal of Auto Focus Lens Side Covers”). 


Fig. 6 Covering Method 


4. Connect a jumper between pin 11 of HIC6552 and 
ground (pin 16 of HIC6552), trigger the oscilloscope 
with pin 10 of HIC6552 (SZ), connect the oscillo- 
scope with pin 32 of HIC6552 (A+B signal) and pin 9 
of HIC6552 (A—B signal) and observe the waveform. 

5. Then, adjust VR5102 (A+B signal offset adjustment) 
so that the waveform level is 2.7V + 50mVp-p, adjust 
VR5103 (A—B signal offset adjustment) so that the 
waveform level is 2.7V + 20mVp-p as shown in Fig, 7. 


a 


(A+B) _ 
2. 


Trattest 


YY 
7V +20mVp-p 
7 


(A—B) 


Fig. 7 A+B, A—B signal waveform 


(4) Silicon Photodiode (SPD) Vertical Position Adjustment 

1. Remove the Auto Focus Cover. 
Directly connect pin 11 of HIC6552 to the ground (pin 
16 of HIC6552). 

3. Aim the camera at the gray chart (VFKWO009) as 
shown in Fig. 8. 


Gray Chart AF Lens 


3m 


Fig. 8 


4. Confirm the focus ring indicates the 3 meter. If the 
focus ring doesn’t indicate 3 meter, adjust the SPD 
vertical position adjustment screw as shown in Fig. 9. 
(Preadjustment) 


2-33 


White Line 


A F Circuit Board (A) 
SPD vertical position screw /o 
\ 


\ —_ 


© 
rc 


LUT 


Zoom Motor 


Fig. 9 SPD Vertical Position Adjustment 


5. Connect the oscilloscope with pin 32 of HIC6552 (A+ 
B signal). 
Trigger the oscilloscope with pin 10 of HIC6552 (SZ). 
6. Adjust the VR5104, so that the priode (A) on the 
waveform is minimized as shown in Fig. 10. 
| 
| 
| 
| 
| 
| | 
| | 
Priode {A} 
must be minimized 
Fig. 10 
(5) Confirmation of Offset Adjustment 
Check the offset adjustment and adjust it ifecessary. 
(6) Silicon Photodiode (SPD) Horizontal Position 
Adjustment 
1. Remove the side covers. 
2. Connect the pin 11 of HIC6552 to the gro nd (pin 16 
of HIC6552). 
3. Aim the camera at the Gray Chart. 


4. Then, adjust the SPD vertical position adjustment 
screw so that the focus ring indicates the 3 meter posi- 
tion, return back to the 3 meter position from the in- 
finity side and near side as shown in Fig. 9. 

5. Connect the oscilloscope to pin 32 of HIC6552, trigger 
the oscilloscope with pin 10 of HIC6552 and observe 
the waveform. 


SPD horizontal position 
_- adjustment screw 


J 


AF Lens 


ee 


CTT TT TTT 


ts 


Fig. 11 


6. Adjust the SPD horizontal position adjustment screw 
so that the priode (A) on the waveform is minimized as 
shown in Fig. 12. 


- 
| 
| 


_ 
Priode (A) 
must be minimized 


Fig. 12 The waveform of HIC6552 Pin 32 


7. Fix the horizontal position adjustment screw by the 
adhesive agent. 


(7) Hunting Adjustment 

1, Remove the side cover. 

2. Set the camera and the infrared ray position chart as 
shown in Fig. 3. 

3. Disconnect the read wire between pin 11 of HIC6552 
and pin 16. 


2-34 


4. Confirmation: 
If the focus ring is fully turned to both infinity 
and near sides by hand and released the hand, the 
focus ring must indicate the 3 meter position + 
Imm as shown below. If the focus ring doesn’t 
indicate, properly adjust VR5104, 


Return back to the 3m position 
from the infinity side. 


== 
== Imm Di 
istance 
e ——_—-7 4 ~¥/ Indication Line 
=p 
=== Imm 
rocu Rin Return back to the 3m position 


from the near side. 


Fig. 13 Hunting Adjustment 


5. If hunting doesn’t stop, adjust the VR5101. 


Clockwise —* D.B width extend 
Counterclockwise —» D.B. width narrow 


Location of Test Points and Controls 


Process C.B.A. (Left side of the camera when viewed from the front.) 


VEPWO0256 
Z | 
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VA307 e 
TP302 A, 
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A T B T Cc U D | E | F ! G 
Deflection C.B.A. (Right side of the Camera when viewed from the front.) 
VEPW0257 
= 
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4 ea vreig LINDICATOR TP605 @ 
a (H-0s¢] vreoi M& [V—CENT] 
VR620 VR618 
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A T B T C T D I E l F ' G 


Auto Focus (A) C.B.A. 


VEPW0361 


DEAD BAND 
AD. 
ADJ. 


OFFSET 
ADJ. 
VR5102 


A 
VA5103 


OFFSET 
ADJ. 


2-35 


COLOR CAMERA SERVICING FIXTURES 


VFKSO02 
LIGHT BOX W/CHART SET 


: oO) Po 

| ae (rane 
— pm 
® ® ® 


(1) VFKS002A_ Gray Scale Chart 
(2) VFKS002B Color Chart 

GB) VFKSO02C Registration Chart 
(4) VFKS002D Resolution Chart 
(S) VFKS002Y Light Box 


TNS 
nae suacseea! 
code 


VFKS003 
REFLECTION CHART SET 


Oo) @ ® 


q) VFKS003A_ Gray Scale Chart VFKSOO1C 

FM DETECTOR 
@) VFKS003B Color Chart 
(3) VFKS003C Registration Chart 
(@) VFKS003D Resolution Chart 
(S) VFKSO03E Color Sheet 


VFKWO006 
AUTO FOCUS JIGS SET 


2) ® @ 


(1) VFKWOO06A Precision Driver 

(2) VFKWOO06B Diffusion Cap GA 

(3) VFKWOO06C Infrared Ray Detect Camera 4) 

(4) VFKWOO06D Adjustment Driver VEKWO0008 VEKWO0009 


Infrared Ray Position Chart(z) Gray Chart 


2-36 


Panasonic. 
MATSUSHITA ELECTRIC 


F’rinted in Japan 


Service Manual 


Vol. 3 


Block Diagrams 


SPECIFICATIONS 


Power Source: 


Power Consumption: 
(with E.V.F.) 


Newvicon Tube 
System: 


Single Carrier 
Frequency: 

Focus System: 

Lens Mounting: 

Lens: 


Lens Diameter: 
Light Sensitivity: 


Video Output Level: 
Sync. System: 

Signal to Noise Ratio: 
Horizontal Resolution: 


DC 12V+10% 

AC 120V + 10%, 60Hz+0.5% 
(with Power Supply Unit) 

DC 6.6 W at 12V DC (Battery) 
(6W with Auto Focus off) 

DC 2.0W at standby 


2/3” frequency separation single tube 
system (built in stripe filter) 


5 MHz 

Electro-static type 

Built in zoom lens (not ‘“C’’ mount) 

8:1 zoom lens with auto/manual iris 

control 

Power zoom lens (2 speed) and macro 

construction 

F; 1.4, f: 11 mm ~ 88mm 

d: 1.0m to infinity 

58mm 

Minimum light intensity on optical 
image: 7 lux (F: 1.4) 

Optimum light intensity on optical 
image: 900 lux 

1.0 Vp-p, 750 (Standard NTSC signal) 

Internal Sync.: RS-170 

More than 45dB 

300 lines 


Panasonic. 


Panasonic Company 

Division of Matsushita Electric 
Corporation of America 

One Panasonic Way, Secaucus, 
New Jersey 07094 


ORDER NO. VRD-8403-513 


Color Video Camera 


PK-958 


PK-958 


Color Temperature 


Control: 


Microphone: 
Audio Output Level: 
Audio Output 


Impedance: 


External Microphone 


Input Impedance: 


(Left, Right) 


Electronic Viewfinder: 


Operating 


Temperature: 


Operating Humidity: 
Operating Position: 
Weight: 


Dimensions: 


2 step switch (indoor/outdoor) & 
Auto adjust 

Stereo microphone 

—20dB, Hi-impedance 


High impedance (1 KQ) 
6000 unbalanced 
Monochrome 1 inch CRT 


5°C to 40°C 

10% to 75% 

Nomal position and Gain up position 
Camera Head with E.V.F 

5.5 lbs (with lens, 7ft cable & shoulder 
pad/handle grip) 

AC adaptor (option) 

2.4 Ibs 

Camera Head with E.V.F. 

8.4”(W) x 7.7 “(H) x 16.4”(D) 
210mm(W) x 192 mm(H) x 409 mm(D) 
AC adaptor (option) 

3”(W) x 3”(H) x 6”(D) 

79mm(W) x 75 mm(H) x 149mm(D) 


Weight and dimensions shown are approximate. 
Specifications are subject to change without notice. 


Panasonic Canada 


Panasonic Hawaii Inc. 
91-238 Kauhi St. Ewa Beach 
P.O. Box 774 

Honolulu, Hawaii 96808-0774 


Panasonic Sales Company, 
Division of Ma sushita Electric 
of Puerto Rico Inc. 

Ave, 65 De Infinteria, KM 9.7 
Victoria Indus; ial Park 
Carolina, Puerco Rico 00630 


Division of Matsushita Electric 
of Canada Limited 

5770 Ambler Drive, Mississauga, 
Ontario, L4W 2T3 


CONTENTS 


PROCESS BLOCK DIAGRAM ......... 0.0000 ccc cece ee ene eeeeeee 3-3 
MICRO PROCESSOR BLOCK DIAGRAM .............. 0. ce eeeeeaeeee 3-4 
ELECTRONIC VIEWFINDER BLOCK DIAGRAM.................000000. 3-4 
AUTO FOCUS BLOCK DIAGRAM ............ 20.0000 cc cece eee eee ene 3-4 
A.V.R. BLOCK DIAGRAM ..... 0.0.0... ccc ee eee eens 3-5 


OVERALL 


BLOCK DIAGRAM 


IRIS 
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ON TROL 


SYNC & BURST 


NTSC 


PRE- AMP ING _ (LUMINANCE (LUMINANCE) f 
AMP CORRECTION PROCESS (YH) (CHROMINANCE) , MIX 
| LUMINANCE ww wa 
PROCESS (YL) 
DEFLECTION 
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NEW VICON TUBE AWB > 
DEFLECTION | _ cP FULL ! FULL AUTO 
SIGNAL - AUTO CIRCUIT >—O | 
GENERATOR VSS | NTSC 
| SIGNAL 
ENCORDER 
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AUDIO AMP AUDIO OUT SYNC BALANCE 
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AUDIO AMP AU BLUE PROCESS (BLUE) md | B-YL = 
(L CH) (L CH) ) MATRIX 
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DEFLECTION BLOCK DIAGRAM 


CP 1 


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3 


HORIZONTAL 
DEFLECTION COIL 


VERTICAL 
DEFLECTION COIL 


5 
VR61 . 0622 > 
H—SIZE < {k) 
TP610 0623 
0617 P615 & IRIS 
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P615 0616 Ley, 
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MICRO PROCESSOR BLOCK DIAGRAM 


SERIAL MODE (@) | 
INT RO 
INT S() 


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1C606 


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Q5102 


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| CHROMINANCE PROCESS 5 
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(9V) 
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3-5 


Panasonic. 
MATSUSHITA ELECTRIC 


Printed in Japan 


ORDER NO. VRD-8403-513 


Service Manual 


Vol. 4 


Schematic Diagrams 
Printed Circuit 
Board Diagrams 


SPECIFICATIONS 


Power Source: 


Power Consumption: 
(with E.V.F.) 


Newvicon Tube 
System: 


Single Carrier 
Frequency: 

Focus System: 

Lens Mounting: 

Lens: 


Lens Diameter: 
Light Sensitivity: 


Video Output Level: 
Sync. System: 

Signal to Noise Ratio: 
Horizontal Resolution: 


DC 12V + 10% 

AC 120V +10%, 60Hz+0.5% 
(with Power Supply Unit) 

DC 6.6 W at 12V DC (Battery) 
(6W with Auto Focus off) 

DC 2.0W at standby 


2/3” frequency separation single tube 
system (built in stripe filter) 


5 MHz 

Electro-static type 

Built in zoom lens (not “‘C’”’ mount) 

8:1 zoom lens with auto/manual iris 

control 

Power zoom lens (2 speed) and macro 

construction 

F: 1.4, f: 11mm ~ 88mm 

d: 1.0m to infinity 

58mm 

Minimum light intensity on optical 
image: 7 lux (F: 1.4) 

Optimum light intensity on optical 
image: 900 lux 

1.0Vp-p, 759 (Standard NTSC signal) 

Internal Sync.: RS-170 

More than 45dB 

300 lines 


Panasonic. 


Panasonic Company 

Division of Matsushita Electric 
Corporation of America 

One Panasonic Way, Secaucus, 
New Jersey 07094 


Color Video Camera 


PK-958 


PK-958 


Color Temperature 


Control: 


Microphone: 
Audio Output Level: 
Audio Output 


Impedance: 


External Microphone 


Input Impedance: 


(Left, Right) 


Electronic Viewfinder: 


Operating 


Temperature: 


Operating Humidity: 
Operating Position: 
Weight: 


Dimensions: 


2 step switch (indoor/outdoor) & 
Auto adjust 

Stereo microphone 

—20dB, Hi-impedance 


High impedance (1 KQ) 
6002 unbalanced 
Monochrome 1 inch CRT 


5°C to 40°C 

10% to 75% 

Nomal position and Gain up peition 
Camera Head with E.V.F 

5.5 lbs (with lens, 7ft cable & svoulder 
pad/handle grip) 

AC adaptor (option) 

2.4 lbs 

Camera Head with E.V.F. 

8.4"(W) x 7.7"(H) x 16.4(D) 
210mm(W) x 192 mm(H) x 409 mn (D) 
AC adaptor (option) 

3”°(W) x 3“(H) x 6”“(D) 

79mm(W) x 75 mm(H) x 149mm)) 


Weight and dimensions shown are approximate. 
Specifications are subject to change without notice. 


Panasonic Canada 


Panasonic Hawaii Inc. 
91-238 Kauhi St. Ewa Beach 
P.O. Box 774 

Honolulu, Hawaii 96808-0774 


Panasonic Sa s Company, 
Division of Mz sushita Electric 
of Puerto Ric: Inc. 

Ave, 65 De In; mteria, KM 9.7 
Victoria Indu: ial Park 
Carolina, Pu@<? Rico 00630 


Division of Matsushita Electric 
of Canada Limited 

5770 Ambier Drive, Mississauga, 
Ontario, L4W 2T3 


CONTENTS 


CIRCUIT BOARD LAYOUT .. 0... LL eee ean 4-1 
PRE—AMP SCHEMATIC DIAGRAM ........... 0.0.0 c cee cee eee ees 4-1 
PRE—AMP CIRCUIT BOARD (VEPWO250) ............ 0.00000 eevee eee 4-1 
DEFLECTION CIRCUIT BOARD (VEPW0257).............0... 00000 eae 4-2 
DEFLECTION SCHEMATIC DIAGRAM .............. 000000 eee 4-3 
PROCESS SCHEMATIC DIAGRAM ...... 2.200022... 0000s 4-4 
PROCESS CIRCUIT BOARD (VEPWO0256)............. 0.0000. cee eens 4-5 
MICRO PROCESSOR SCHEMATIC DIAGRAM............ 0.0.00 0c ev euee 4-6 
MICRO PROCESSOR CIRCUIT BOARD (VEPW0263)..................... 4-7 
MICRO PROCESSOR SW. SCHEMATIC DIAGRAM...................004. 4-7 
MICRO PROCESSOR SW. CIRCUIT BOARD (VEPW0265).................. 4-7 
A.V.R. SCHEMATIC DIAGRAM... 0... ee eens 4-8 
A.V.R CIRCUIT BOARD (VEPW0258) .. 0.0... 0... ce eee 4-8 
MIC JACK CIRCUIT BOARD (VEPWO280) ............. 00.0.0 e eee 4-8 
KEY BOARD SCHEMATIC DIAGRAM ............. 0.0.00... e eae 4-9 
KEY BOARD CIRCUIT BOARD (VEPW0264} ................ ccc eeeeeee 4-9 
AUDIO SCHEMATIC DIAGRAM .. 1.0... 0.0000 cee ee ee eee ne 4-9 
AUDIO CIRCUIT BOARD (VEPW0262) .............00 0.00 eee eee eae 4-9 
POWER ZOOM SW. SCHEMATIC DIAGRAM ...............0 0.0.00 e eee 4-9 
POWER ZOOM SW. CIRCUIT BOARD (VEPWO260) ...................... 4-9 
CAMERA UNIT INTERCONNECTION SCHEMATIC DIAGRAM............. 4-10 
ELECTRONIC VIEWFINDER SCHEMATIC DIAGRAM .................0, 4-11 
ELECTRONIC VIEWFINDER CIRCUIT BOARD {VEPWO266) .............. 4-11 
ELECTRONIC VIEWFINDER INTERCONNECTION SCHEMATIC DIAGRAM ... 4-11 
E.V.F LED CIRCUIT BOARD (VEPW0261) .......0.00 0.000. 4-11 
AUTO FOCUS SCHEMATIC DIAGRAM ............ 00.000 e eee 4-12 
AUTO FOCUS (A) CIRCUIT BOARD (VEPW0361)..................004. 4-12 
AUTO FOCUS (B) CIRCUIT BOARD (VEPW0362) ................00000. 4-12 
AWB SW. CIRCUIT BOARD (VEPWO0365) ........0.0.0.0 0.0.00. eee 4-12 
W.B. SW. CIRCUIT BOARD (VEPW0363) .........0.00 0000.00 ce eee nee 4-12 
FOCUS OUT SW. CIRCUIT BOARD (VEPW0O366)..................0000, 4-12 
AUTO FOCUS INTERCONNECTION SCHEMATIC DIAGRAM.............. 4-12 


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SIGNAL WAVE FORM (DEFLECTION) DEFLECTION SCHEMATIC DIAGRAM 


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TO PROCESS C.B.A P607 


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TS D611 OAS0AR 
NTSC it ee 
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1 40mVp-p(2mvV/5ms div.} 11. TP601 5Vp-p(0.2V/5ms div.) 21 +(C601 
0.8Vp-p(50mV/20ps div.) 


C614 
® 1K V0.0047 BEAM 
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$F619 or TP604 
> TO BIAS LIGHT ASS'Y P603 16 R618 


1 +B (5V) [2 1K 
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1,5Vp-p(50mV/20ps div.) 1.3Vp-p(50mV/2Qus div. } 0.0068 : $ 


TO PRE-AMP C.B.A P601 


(TARGET)/1 
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4 K {+ 9V)13 « { +9V } t 
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4. ; e@ 15k 
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— _ 2.1 | 0672 247K 
R6113 > 4. 
68K — == 1000P 


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AAA 
VVv 


4 6OMmVp-p(2mV/5ms div. } 14 4Vp-p(0.1V/20us div.) 24 = 130Vp-p(5V/20j0 div.) 


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2200P == 4700P ERAGET ; . 
. ™ a VOLTAGE) 

NA — a + 

R6115 12 PICK UP 5 ty 0622 
2.2K TUBE C674 + 2SA1018 (QR) 
Vv. AMP PROTECTION 16V 0.471 R664 180K 


D607 
FMA151K 


R680 10K 


R652 10K 
+5V 


0616 2SD60} - 
(QR) 


R651 Q615 
10K 


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14 Vv. AMP 3 TO P303-18 (LUG IMAGE)/3 
S668 Ba TO P303—8 (IRIS DELAY) 3 HY 
TO P303—2 (1.8V) [19 1.8V | 

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+ 


R653 |cga2 MA 
4.7K |revio} 151K 


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D606 ANS0B82S 


D604 
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TO P303--1 (VSS) [20> 


1s SAWTOOTH 2} TO P303—6 (6V))15 BV 
OSC TO p303—3 (5V)/18 | 
d 


~ = R629 1.5K R631 2.2K . _ TSE 
16 ye: 10 P3030 lao} a - [sy Jew | DYNAMIC Focus) Vv Cir [HSiZE) 
TO P303—9 (CP2) 12; ISHADING SV R611 v 1K 
Took f\— TO P303—19 (DARK SD)[2 p<» —__» 10KB poKe peg, @ 0.047} 18 
TO P303-16 ‘DARK SD)[5 — 43 {Hj 43 IH} eis 
6 1.3Vp-p(50mV/Sms div.) 16 80Vp-p(2V/20us div.) 26 BVp-p(0.5V/20us div. } TO P303-14 (COLOR SD)I7 iS > oy 
TO P303—17 (COLOR SD)|4 
TO P303-—15 (COLOR SD)/6 oe R608] V R609 |V R610 
TO P303-12 {COLOR SD)/9 $ BiOKB [OKE 
TO P303-5 (IRIS LEVEL)I6 pRE24 § 
} 4 


¥VV 


C639 — R649 

R647 50V0.1 180 vR617 

R646 3.3K 1.5K c 2KB 
WA WV 


20 | 603 R650 220 |, 
30m 


C632 
10v4a7 7 


> $ 
12625 $ $ 
33K__] R626 $ 


R645 270K 


“~Y cea d-_G@)d-ce2s]- 
16V0.47 (> Fe16v B,C6265 
\ 0.47 [16V10 


‘ 1C601 NJM3415M 


7 1.5Vp-p(50mV/20us div.) 17) 2M p-p(50mV/20ps div.) { | +— ?s& C623 16V10 


R601 C602 
10K 16V10° 


TEBE 


SR609 68K 
? 


C601 10V47 
+ 


DY P602 I 
ound (THERMISTOR)[1 
(V. COIL) [2 $ oK 
, (Vv. CONS R610 10 
8 5OmVp-p(2mVv/20¢s div.) 18 1cC601 @ (H. COIL) 4 y 
4Vp-p(0.2V/20ps div.) 


[v. BW0278 " ar 5 } r 


P604 


TPE? oo 
He 12 
MICRO PROCESSOR 


SW 702 
[_camemarver C.B.A. P60B  ypp 
amen TO B704—1 (+B 5V) 

1 TO B704-—-2 (RESET) 
TO B704—3 (EXT. TITLE H) 

TO B704—4 (E.V.F. (INF) 
9 5Vp-p(0.2V/20us div.) 19 1c601 @ ane FADE H) 
1.1Vp-p (50m V/20us div.) TO B704— WER LED) 


R670 15K| S 
< 


TO B704—7 (BACK UP H) 

TO B704—8 ([E.E) 

TO B704—9 {TITLE DISPLAY) 
TO B704—10 (CAMERA/VCR)}1 


[sJe[o[efofnf—] 


o]ela 
‘ 


N\ 


10 1.5Vp-p(50mvV /Sms div.) 20 =1C601 
1Vp-p(50mV/20us div.) 


4-3 


1 42 MYLAR CAPACITOR SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
® therefore require the special handling techniques described under the ‘“Electrostatically Sensitive (ES) Devices” 


2 —#= NON POLARITY CAPACITOR ' 
section of this service manual. 
3 42 TANTALUM CAPACITOR 
hi 
| af | 
D611 OASOAR 
mo 
Hw 
653 50V0.47 OL q 
4 5 T 3 R678 22K (TRIS INDICATOR] 
VVV 
\ R671 56K 1S. 22KS 19614 4 90V0.47 V R619 
+ 4 “Ss m “1 | C650 1$ | 100KB 
2VREI8 ¢ Ls5ov > 
|] ce18 R672 H--OSC} | 3K8 T a10P C651 0.1 
1 c614 450V1 $47 ce47 | Reva s , 0648- $R677 tt +5V 
@ = 10,0047 BEAM - > 100V0.0015 = g¢.2k> 16V10,5 > 560 () 
or CURRENT O) AN rr 
. R675 62K NW 16652 1604 7 LT 
TP604 K 
R618 A673 1 50V0.022] |390, Z 
1K 2.1 2.1 0.2 3 2.2 9 38 ! | | 
q R614 19 18 17) 6 15 14 i + | 
$ 330K _+— | 
€ € . | 
r SEP. VIDEO LEVEL GATE 
DISPLAY e 
P 
r | C660 33P C659 33 
1 — | X601 O 
_I . PD 76086-607-00 VAX 
4PD75086-607- 39 oa 38) me(37 een 36 ema 35 34 el 3.3 jee’ 32 ee 3130 eee 29 ee 2B sae 27 
DATA DATA DATA DATA X2 x1 GND DATA DATA 
REFERENCE VERTICAL 40) OUT OUT OUT OUT OUT OuT 26 
VOLTAGE osc DATA OUT 
R6107 56K 
ANA 41) DATA IN DATA OUT (25 
R6108 56K 
ANA? 42) DATA IN DATA OUT (24 —— 
C657 R682 ! R6109 56K 
@"* 2 5.1K ANE 108 Wy 43) DATAIN DATA OUT (23 
R6122 5.6K | Gh S654 at + T ? 
4 (1/4) 220P ‘ ) ~ | R6110 56K 
2 R681 WW 44) DATA IN DATA OUT (22 
47 [+1.8v] T 
(24) 23 22 21 20 19 18 17 16 15 1 
Wr 45 DATA OUT (21 VDD AB AQ R/W OE A10 CE 1/08 1/07 1/06 V 
(V—LEVEL| 
Kris 46) DATA OUT READ (L) (20 
25) R6BO 10K 47) DATA OUT WRITE (L) (19 
T DATA OUT DATA OUT (18 
49) DATA OUT DATA OUT (17 
(C604 IC605 
e170 AN90882S AN90B82S { R683 56K 
634 50) DATA OUT 16 
10V47 7610810687 A? AG A5 A4 A3 A2 Al AO 1/01 1/02 i 
1 2 3 4 5 6 7 8 4.7K |e op 51) DATA OUT 15 R684 56K 1 2 3 4 5 6 7 8 9 10 1 
D 
waist K GND DATA OUT 
-—+—J 52 DATA ALL 14 
OUT RESET CLI VDD CL2 INT RESET 
1 2 3 bmn 4 5 6 jem 7 POC @— O- & 
a a 632 f 
H—SiZeE J{2SD601 (OR) a 
H—CENT, -|- -|- -|- -|-4 -|- -|- BOKHz}| VR62% 
r-[-a | roj-4 rot fp robe roa rh q Q 066133P & [250KHz) voeece Ree 56K 
\ | i | | | i l R6103 5.6K a 
C639 R649 fl } | | - oe tp612 @ 
50V0.1 4 1 { | 
80 VR617 c_|ou t_|.J Lis Lif-3 Lj_J os | 
| ce78 
R650 220 . 1.81Q612 + 100P 
2$D601(OR 
16 15 14 13 12 Tr 
cea S les — 11 10 9 
10V47 10V 100 
>i 
C631 | R641 D610 
c636 | +|10V47 | 220 MA165 
100vV= . 
0.00033 ~ 
tr vi e@ 
rc 
TPG610 IC606 AN90B82S | 
16 15 14 13 12 11 10 9 R691 220K 0608 1S954 
» hi ea 
ron ee sept LT dow 
‘ ce6s {4 wB_ 6.347 R689 - F e3Vi10 
q R693 100K 6.3V22 hr , tr R699 
td R670 15K} $ oO ot - AWW 37 = C662 10K SW6C 
4 \ OR R688 | 0626 5 6.3V100 
“1 0628 (QR) R695 560K | 258709 [4.3 
56K + R697 100K 
q 2$D601 (QR) (Q.R} 
S$ R610 100K p C664 ANA , 
$ SEL Si 
< 9 1000P . 
ar REO4 D609 WT ( 
68K IetK | = 
22K 50V1 6.8K KE KG OZ 
2 2 
S OR 
. OFF 
‘Ir vr thr +5V sw601 


,@ MYLAR CAPACITOR SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
therefore require the special handling techniques described under the “Electrostatically Sensitive (ES) Devices” 


section of this service manual. 


1 


NON POLARITY CAPACITOR 


1 
2 —4® 
3 —4@ TANTALUM CAPACITOR 


Schematic Diagram 


VR601 | V—CENT. 
VR602 | V—SIZE 
_ cl joao VR603 | TARGET VOLTAGE 


2} TO B707—2 (H. SYNC) 
> 1} TO B707-—3 (V. SYNC) 


P605 VR604 | FOCUS 


E.V.F SOCKET 7PIN (H. D.) 


a VP SOCKET IPIN (NTSC VIDEO OUT) VR605 BEAM CUR RENT 


E.V.F SOCKET 5PIN (V. DRIVE) 
V.F SOCKET 6PIN (V. DRIVE) 
EVE SOCKET 9PIN (9V} VR606 | BIAS CURRENT 
E.V.F SOCKET 4PIN (REC LED) 
L+8v ] E.V.F SOCKET 8PIN (12V) 
jo P614 FROM PROCESS C.B.A VR607 | DARK SHADING H 
a l —{1i]TO P304—1 (W.B. CAUTION (R)) 
L604 pan es P304—2 (AF ST. BY L) 

390 i > gre P304—3 (COLOR TITLE) VR608 DARK SHADING H 


DICATOR] 


a 
a 

_— 
> 


' vvvy 


[o]~[ofo]a[o[s]—] 


TO P304—4 (W.B. CAUTION (B}) 


TO P304—5 (FILTER SW H) VR609 | DARK SHADING V 


TO P304—7 (COLOR TITLE) 


TO Fa0s-—8 (AFM. VR610 | DARK SHADING V 


(EXT. TITLE) 
TO P304—10 (LOW LIGHT) 


TO P304—11 (EXT. TITLE) VR611 | DYNAMIC FOCUS H 
P612 MICRO PROCESSOR C.B.A. VR61 2 DYNAMIC FOCUS H 


[1] TO B702-2 (12V) 


2170 8702-1 (STAND BY L) VR613 | DYNAMIC FOCUS H 
FROM REAR SIDE C.B.A. (GAIN UP) VR61 4 DYNAM iC FOCUS V 


FROM REAR SIDE C.B.A. (POWER LED (R)) 
FROM REAR SIDE C.B.A. ( 
FROM REAR SIDE C.B.A. (STAND BY L) VR615 | H—SIZE 


AVR CBA VR616 | H—LIN. 


TO B6001-—1 (G)} 
TO B6001—2 (DATA WRITE (5)) 


TO B6001—3 (DATA WRITE (6)) VR617 H—CENT. 


TO B6001—4 (DATA WRITE (7)) 
TO B6001—5 (MP 5V) 

TO B6001—6 {DATA WRITE (3)) VR61 8 H—OSC 
TO B6001—7 (DATA WRITE (4}) 
TO B6001—8 (DATA WRITE (1)) 

TO B6001-9 (DATA WRITE (2)) VR619 IRIS INDICATOR 
TO B6001—10 (DATA WRITE (0)) 


TO cert tteon VR620 | V—LEVEL 
KEY BOARD C.B.A VR621 250KHz 


TO B7201— 1 (G) 


L-]N] ej a] a] ~Joo}o 


| ca60 33P C659 33P +5V 


x601 W602 
19802 50 VvSx0094 q s o 
#PD7508G-607-00 39 e387 mren'36 mee 35 34 Jae 33 p32 nme 31 e329 (28 e297 5 


DATA DATA DATA DATA X2 X1 GND DATA DATA 
OUT R6118 
56K 


AAA 
VVv 


40) OUT OUT OUT OUT OUT 26 
DATA OUT 


2 
ie 


8 


R6107 56K : 
AW ‘ 41) DATA IN DATA OUT (25 R6106 
R6119 1K 
R6108 56K : 56K 
AAW 42) DATA IN DATA OUT (24 — 
AAA 
R6109 56K R6120 56K 
vv DATA IN DATA OUT (23 (1/4) MP +5V 
1 


R6110 56K 


A 
of alw[r(— 


= 
= 


DATA IN DATA OuT (22 


10607 
HM6116LFP-4 
(24) 23) 22 21 20 19 18 17 DOE 3 
DATA OUTS voo Ag Ag R/W OE A10 CE 1/08 1/07 1/06 1/05 1/04 


DATA OUT READ (L) (20 
7) DATA OUT WRITE (L) (19 
DATA OUT DATA OUT (18 C 


DATA OUT DATA OUT (17 


= 


INl=lololo|~fofa]afo]r]} 


nd 


R683 56K 


50) DATA OUT 16 


TO B7201-— 2 (MP 5V) 

TO B7201—3 (KEY MATRIX) 
TO B7201--4 (KEY MATRIX) 
TO B7201—5 (KEY MATRIX) 
TO B7201—6 (KEY MATRIX) 
TO B7201—7 (KEY MATRIX) 
TO B7201—8 (KEY MATRIX) 
TO B7201-9 (KEY MATRIX) 
TO B7201—-10 (KEY MATRIX) 
14 TO B7201—-11 (KEY MATRIX) 
12}TO B7201-12 (KEY MATRIX) 
13}TO B7201—13 (KEY MATRIX) 


14 
U 


TO B7201—14 (KEY MATRIX) 
TO B7201—15 (KEY MATRIX) 
TO B7201—16 (KEY MATRIX) 


TO B7201-—-17 (KEY MATRIX} 


18 TO B7201-18 (KEY MATRIX) 
TO B7201—19 (KEY MATRIX) 
TO B7201—20 (KEY MATRIX) 

i” 


. AT AG AS A4 A3 A2 Al AO 1/01 1/02 1/03 GND 
Y0P 61) DATA OUT 15 REB4 SEK 1 2 3 4 5 6 7 8 9 10 1 
DATA OUT 


he yyy yyy ttt « 
= 


HOSOI E 


DATA ALL 
OUT RESET cul vod CL2 INT RESET 
1 2 3 4 5 6 7 8 9 10 11 12 13 


0632 
0} 2sD601 (QR) REGS 
e) C661 33P I 200KHz | ieee See eee 


5.0 | 
TP612 @ 


C678 
100P 


a. 
TT 1 


WTO B7201-21 (KEY MATRIX) 
TO B7201—22 (KEY MATRIX) 
TO B7201-23 {KEY MATRIX) 


301 MICRO PROCESSOR SW C.B.A. 
11TO B709— 5 (KEY SCAN) 

2)TO B709- 6 (KEY IN) 

3] TO B709—(G) 

4/TO B709- 7 (KEY IN) 

5|TO B709—13(KEY IN) 

6]TO B709— 1 (KEY IN) 


— 
; al 
shh dye 


sos] 


10 
REV SW611 
TITLE REVER-SE Jo-+ 


CUE SW612 = P609 MICRO PROCESSOR C.B.A. 


Fé] TO 8701-16 (EDIT H)} 

15 TO B701—-15 (KEY IN) 

14] TO B701—-14 (KEY tN) 

3] TO B701—-13 (KEY IN) 

12|\TO B701—12 (KEY IN) 

r > 11]\TO B701—11 (KEY SCAN) 
TO B701—10 (REC H). 

TO B701— 9 (KEY SCAN) 

TO B701— 8 (KEY SCAN) 

TO B701— 7 (KEY SCAN) 

TO B701—6 (KEY SCAN) 

TO B701—5 (KEY SCAN) 

4/TO B701~— 4 (KEY SCAN) 

TO B701— 3 (INTERVAL (R)) 

TO B701— 2 (INTERVAL (S}) 

TO B701—1 (SERIAL OK H) 


R699 . 
10K SW605 SET 5 


4 SW610 


R SW603 \e sLOw 
SEL W605, & ts 3 
ADJ SW607 P/P SW609 
| od s sw604 | oy sweo { 4 


baAAAS 


INSERT SE613 { 


q 


j 


R6112| R6111 

R6100 

6.8K S6K ¢ 86 
< 


‘ 


A 


3 
2§ 
” 
Ps] 
pan OO 
AAA 
BOM ESOONO 


iss) 


MICRO PROCESSOR SW C.B.A. 
TO B709—11(KEY IN) 
TO B709~ 2 (KEY IN) 
TO B709— 4 (KEY SCAN) 
TO B709— 9 (KEY SCAN) 
TO B709—10(KEY SCAN) 
TO B709—-12(KEY SCAN) 


FROM POWER ZOOM C.B.A 
TO P801~—BACK UP (+B) 


i J i K i L I M T N T O T =) 1 


AYY | ' hi 
ROCCE COE 


PROCESS SCHEMATIC DIAGRAM 


14 Wie 
+ 6307 
® - aoi0 D305 MA165 =—- R331 10K 
R340 10K 
WA 
+5V ate 
L306 
P301 10 ps 
PRE-AMP _— — — [J 
SIGNAL IN. —-» — 
VR302 -_ L 
1QQ0KB NTSC] . _ s R3131 
[av >“ —, N PED +—-@ . iv a: Nn: R3324 +1,8V ? 5.6K 
T = 3 R314 R327 15K TP808 10! 19: 10. 10K (1/4) [18v] 
R307 < J 5.6K WA 28 i f AM 26: 
: WA ; . 
56K > o304 6.3v47 <+{ +1.8v] 312 / / + cai9 b R333 i 
aRicn) 25V3.3 i é 12K 
C303 16V1 “ tr R3320 22K cane en ; a 
LENS PORTION —paqp it i Ht wo j J R341 15K 
>30 = +5V ] [+1.8V “ 
TO FILTER SW [1] 2m | €302 10000P @M 43 vA303 / / y +5V + 321 
TO AFME [2 R303 a z x8 R328 g , a> ne - . : . n ~ 16V10 
a . > 1G € LAB ~ i 
To Ae st.ay [3 he ; — é 8 —(1) (1) (14) _(16) (18 bak { 
2 
om TO FILTER SW | 4 | aN 1C301 _ na at $ R342 
TO AWC SW ;O—4 5 eT AN2133 R326 CENTER 18k DL302 
| PULSE 
To awcsw!O— 6 | q 2.2K EMPHASIS SEP CLAMP ELB4K013 
7} (aay) | ) 
oa R304 C323 10P = 
Y D301 +1.8V 
4 Pt MATS AK (rev) | 
WWA- 7 3 R350 
2 1C304 
ho} — — ] UNDER aLK y '?k AN2210 
LIGHT 
D 
D302 
marries y GAMMA/DE-GAMMA 0311 5 LC302 
Q301 ap } 4 2SD601 (0.R) ; ELB4M010 AAW 
1 6§ g 
2SD601 16 4 18 R351 | 
(0.R) . ALC ALC | ae AMY ¢ 330 R352 
ae cau 5 / 9? R339 10K AAAs _AAA AM " 
R305 $ oy to j 5 - WW WW Wi 
4.7K cere) Tocur Ll4 / G3 R344 10K | R345 R346 10K tLav 
Dan / _ 82K 
ae i Ge i +1.8V 
q oa ! 
TP303 I —(. 7 11 13 15 Dar kn a312 
4 a" . 6 _ 6 - 1g “ 2SD636 (Q.R) C322 220P 
VR301 $ : _ O) ib 0.6 18 1s is Lg eu R330 t-@ TP305 z : s 349 
30KB ¥ R306 ' [3011008 sabe : an ie 100K 28D601 (0.R} 06 27 7 aes 
; M C314 16V0.1 ~ AN ANAL cue pane 
FAUTO "r 33K \ Lisv_ }»~ WO Tt . Pei S49" “J [rev}e— ww WwW ~<(_+sv ] . R347 330K $ Ag322 - § B35 
RIS \ s > R328 C315 ge , C316 ‘4 TOKE ; ee 7 a rr | 
\ eae T® < +5V 2 20K 1 “we O) 16V0.68 13 7 R348 10K 20° _—__—- 
: | 
\ 25 >i 
' R308 820 >t r 
rw @ WW —4 D304 MA165 28~_ ey = 
——- ee 7 R336 4.7K 
R310 AAA 
—_ 1.5K R3225 1.5K 
<= AA 
L319 22. K 358 . + ©6330 
DEFLECTION C.B.A L3 20 a310 16V10 TP310 49 390P 
P303 2701 C3112 J 
' o5p 7 288709 (Q.R) ANH eo 
TO P615~ 20 (VSS) | | ;~« = C3111 ‘ aay “ 
@=s R3130 4 
TO P615— 19 (1.8V) | 2 +1.8V 47P ana 5.6K f 
-—J = L31 / 
TO P6ts— 1a (SV) | 3 R—— +5V 29 DL301 P3227 10 60: 
en | \d ae, > 470 BH 
TO P615—- 17 (9V)] 4 = — EFD-MT645C 45E A ‘ = 60 
| é F Low, 4 
TO P615~ 16 (IRIS LEVEL) 5 F< TP302 R313 390 1 10P ] ny 
§ 
TO P61s- 15 (6V)] 6 WW VA305 5008 C) 378 2.7K 28801 
|e ‘ 
TO p615— 14 (MP 5V) [7 | MP+5V L303 6.8, L304 _— aay — (0 R) 2? 
TO P615— 13 ( IRIS OELAY) [8 b> 68K 3 43k -! b aai3e 
[3 [ } < C318 R324 VJB R3116 3 R31 
TO PE1S— 12 (CP2)] 9 | +1.8V |< +1.8V 5208 Doe JBW0275 AWW 10K 
TO PeIs— 17 (CPI) [10] a WY 3133 56 
TO P615- 10 (FADE BAR ) [11 |} Pry ~ AN, 
TO P6IS— 9 (COLOR SD ) [12] 3 / (OR) 4a 
TO P615— 8(WH.0.) 113 0321. ae] 7 
TO P615— 7{COLOR SD) | 14 }» ’ - 30 [<4 [(QR) R3318 
ce “ R330 20KB 
TO P615- 6 (COLOR SD) 115 AB SEP | R3325 $ ARS Q)\ __ 10K MA. 
aia vs . 10K (1/4) > NY. wy 
TO P615— 8 ( DARK SO) | 16 [> L308 $373 VRI09 3KB c340 #8” ) aK ' ‘8 D309 
TO P615~ 4 (COLOR SD) [17] 100, 3h i (eu tovio to 47K 0320 wie R3317 WW Marsik 
TO P615— 3 (LUG IMAGE }|]@/« TP306 are R3118 22K 
a MNA- ; . 47K AA 
TO P615—2 { DARK SD) {19 be 38 2 R376 1 0343 38 R3125 R3120 
TO P615— 1 (ABO) |20}<« C333 D307 > 15K { 100P ye we R3102 
18 10000P —s«ISV73 / TP307 / 45 VR328 30KB 
asia / R3124 33K j 10K s 
—_ >, / L TP309 / AA 4 > 
2sp601 (.R) | i @) Lary 39 40 3 R298 °. WW / — R138 1.2K 
q < f : 1 i 91 / WwW . 
COLOR s C341 0.1 “Ne : . 2R3119 7 TT 
[Se8BiNo | mong curr | Fame gh / prepa =H , 8 i 15) ap B1 ot 59 ict 
1.5K cas Cty 32 VR318 x / 09. 6. i 
rr ( . Cy VR319  VR320 . a . / R399 10 7 / 7 
SHADING V VR3t1 V R313 10000P R379 10K 31) NI (33) 1OKB 1oKB take [8 \ \ 4p | 42) 1 43 | 44 ——— ws 28 SATURATION CLIP 
100K 8 100K8 ans . <A ‘ : \ \ “< ‘ 5 i — “ 
VW ’ Ny N res TP308 e . ‘ x tc 0319 74 - 
VR310 : 25 wos 2; 1 2 e yon WAS ad 51 ia Ou 5.9 y ua uel 2SD636 M\ 
tows 43 He 3 33) dg pt iy ey riey sh 3h 3h 3h 18 7 16 15 14 13 12 i 1 (.R) R3104 
5 (C305 SYNC WBLK V.SLIP BLK vP BSC BF cP2 CPi R3108 10K A3103 
COLOR AN2331 220 22K Y LOW COLOR LEVEL 
SHADING V as (ene L 2390 a3100 ¢ Jrutse CLIP 
= > < > AMP 
$s R383 AMP AMP GAMMA 2 Ss 4 
COO E GH NOOKB S sek CORRECTION 7 15k 82K 5 R106 & 
7 2 
R GAMMA/ L 391 8.2K § 
$ R382 2 § GAIN COLOR TEMPERATURE _ [Gain CUAMP 
> 150K 7 15k —4 3 nave CONTROL DETECTOR | CONTROL 
AMP y 
V. EDGE S a392 . ) —_ $3107 + 10356 HIGH LUMINANCE 
: b 10K - [6.347 HROMA CLIP 
DEFLECTION C.B.A. P3048 $ R381 Rago } AMP CORRECTION 315K : 
< > . 
TO P614—11(W.B, CAUTION (R) [7] < 10K aso $$ R3114 
< 
TO P614— 10 (AF. ST. BY) } 2 R394 $8 R395 $ R396 5 A303 4 10K > 268K 
= SHADING , < < a, 
TO P614— 9 (COLOR TITLE) [3 be S R380 $ A384 s R386 S ee RIE 1KKS 15KS 18KS a7k 3 BURST PHASE 59: 
+ < ve 
TO P614— 8 { W.B. CAUTION (8) | 4 |e 7 150K 7 150K ¥ 150K AMP SEP. [ame] | . ae CHANGE / 
TO P614—7 ( FILTER SWI] 5 bing a8 } $ R397 C342 | VDD H.RESET VSS OSC IN OSCOUT SCI SC2.  WHD  v. RESET / 
4 « 5 > 
6 3 T 47K 56P 
Lo | 150K 
TO P614— 5 (COLOR TITLE) | 7 Le - - rr a oF ae vr a - an 
wal TO P614—4 (AF/M.F}| 8 b< L309 0338 
| > | L310 | . + AAA 
TO P614— 3 (EXT. TITLE) ~ O.1 | > 2 4 i Ww 
eee J vesis Lys Lys Ws Ws "90H 08 I st sk BFS : CRB WET R372 4.7K 
TO P614— 2 { LOW LIGHT ) {19 COLOR 7 00K 8 > > s > R388 / 4 VAIS AF i [CARER | 
my ! 3 ; 
TO P614—1 (EXT. TITLE) fii}, SHADING Vv | 10K r / \ 10KB 49 | BALANCE 
¥vWw 4. 4 
VR314 VR316 VR3I7 AW \ t ‘ vows. yore? Voie 4t 
100KB 100KB 100KB R378 L \ { \ : C347 10000P VR326 VR32? 
COLOR - 10K F vs36 oF 6339 35 og. 7 [R. Ja [R73] (R. f7] 100KB 100K B A3115 
| SHADING V | COLOR COLOR 34) 5P 33) 36 3) 4 Le clas AAA od AAA 6.8K 
(nar SHADING H <r 1 ; C Ya Wi 
i DING H SHADING H | 3s 20P ae r 7 ——— 
ee 2 R3113 CARRIER 
[+1.8v }> ] 82k BALANCE | 
2 R3185 
< 
CARRIER | 7 68K . 
Tr Lud [PHASE | 
WW 
R329 [ 
ae C313 
i 337 180K T a 700P 
ir 


9 
+ 
42 


MYLAR CAPACITOR 
NON POLARITY CAPACITOR 
TANTALUM CAPACITOR 


SPECIAL NOTE All integrated 
therefore require the special ha 
section of this service manual. 


R3200 4.7K 
~ R3164 3 R3163 
Ann, 
R340 10K 7 10K 10K 
AW 3201 4.7 
+5V 
R3156 22K 
> R361 560 ww 
R359 5605 - $ ” R3195 / +{ ca72 
: fi 0316 258709 (Q.R) ea 2 3100 “3 6 3v R3169 
4 |} NA a “47 B2P 47 
& R3131 C324 R356 S RISES t 62 
©) 10: R3324 +1.8V 3 5.6K 10000P 2.2K > 15K - A363 R962 10S R364 ™ R3211 33¢ 
J 10K (1/4) 10K J S 12K 
v¥v < 
= cate g R333 +5V ‘ “1 8V} R365 “rome ai 1 
L305 1m 1000p > 1-2 $ 17 18 3. R366 15K LC 
| 13k a : 
! i 
> R341 15K / Jaase i 
+ | 680K 6.3V10 DISPLAY 
24 Vos g @49 18 CONTROL 
oe >) 0 — A 10 11 12 $ 2368 
5 GNO = ox 
> Neat 31302 MEGATIVE EXT. PLAYBACK 
. SC AMP. BURST SYNC. 1C309 
CONTROL 
B4k013 MN6172 
BURST 
VIDEO DELAY 
2 APERTURE YH. CHROMA GATE R3207 
? GEN APERTURE MIX CLAMP L-CLIP BURST 47K 
PEOESTAL SYNC. 
GND MIX. - e310 ANA, 
MA/DE-GAMMA 10302 WHITE BLANKING MIX. * 3470 
Q311 > —{: \ AAA H-CLIP + 6. 2 
q 2SD601 (Q.R) 1C303 ELB4M010 WA SIGNAL 6d8 AMP. C310 
: R351 GEN » 50V2.2 
AAA NJM2904M ae BS 4 . 
¥¥vV v >s 
0.7 R339 10K . c vu] [Purse] [verter NTSC j 184 
03 R346 10K WHI PEDESTAL CLIP SEP. MIX. OUTPUT >t Tee 
0? av vcc D316 C376 22K 0321 MA151K , 
| : 1p—i)—- —L a—(3 MAISIK a 
7 Q312 4 ; 1A LB SD 2) Pt C373 100P 3278 47k 
y 2SD636 (0.R} 9 Zz 4 ‘ wer “ - D317" " MA165 J 
r—-@ 7305 \ AWW +—1— 5 
250601 (0.R} S agsa —- AS165 ISK Raz12 
“@| +5V / bot AA ' 
<«{ +5v | ; R347 330K 3 83322 2 56K 3 l | VC) ‘ R316 15K nteo ” 
Vv 2 . 
R348 10K id ae 0 ; - R3143 B20K 7K 
vR308 ~ 1 6.3v 220) R3230 1M + WW 
| 3KB ? B® Le C379 
L 50V0.4 
R3233 2.2K » 142: 10000P ee ce ee ee ee 
“ Toazat . u [ 
R336 4.7K 32372 
AA arn | > Ri 7S 2 
| Gain “| S82K. 100K 9 $3245 SR 
ithe ; 0323 1 15K 5 
OASOAR 
= C330 C3161 2 aoe 
39P 3235 100K 270P > 
| VA- + 
VJBW0283 | 
= > 
R3142 2 j 
18K al 2s 2h bh 
R3270 10K A 7 
AAA. 
3121 W- | 3173 
3K VJBWO277 AW, 
C375 0346 
0394 100P 2SC2295C/ 
2SD601 
(O.R) R3171 10K mm 
é 3 C359 WA- 
~~ RA3318 0.1 
— R3325 wr ay 
10K (1/4) bed 
R337 “st 0383 @Ol+ C381 oo 382 
§0V0.47 - 6 16V0.47 
38) R3125 4 
15K 
of R3102 VR329 SE , : 
Ak: ‘ 2.2K 80 
R3124 33K 45) $ L 100KB . 74 ( 
5 243 y 10K 3 2th D rrsi6 15 / \ / 
, 
/ ‘ ae . GAIN / / / 
AM i } va 
vr a “4 3319 10K / R399 10 04 W CHROMA | i_f[ - C385 c386 | - { / 
i) (43) (4 AM, TURATION CLIP o——T $305 3B, t6vi0 heviote / 
3 — - = an O49 23 3.4 L315 100 
| 1.4 0.1 59 0. 04 0.1 2$D636 We —2)-—( -— 8 10 14 16 10312 J 
15 14 12 (Q.R) R3104 { AN2341 
BLK vp BF cP1 R3105 10K —4 NFB R3139 © 
2 ‘ LOW COLOR LEVEL AMP PULSE 22K * C360 
LC PULSE : SEP. = 4010 
R100 « CLAMP fae 4 CLIP 
8.2K ¢ 0311 (G 
q AMP MA27A 
R3 106 2 AMP CLAMP 
8.2K § 
GAIN [GAIN 
: CONTROL | CONTROL MATRIX i 
= R3107 r 
i" TTL 
R3101¢ «SR Spa 
WK? 36 ; 63 F3 aan 
ODULATOR BURST PHASE j 
i CHANGE MA165 
OSC IN OSC OUT sci SC2 V. RESET Y 
, (C307 3 )—{ 5 
AN2431 20 Io 3s 
31 7 [35 7728 ~[29 08 61 4 4 Lt cae | 
Wa Wa ea | 03387 1+ ; | C388 gk R31915 | rooooP L- 
; ars R3109 7 R3122 560 *. 35V3.3 PL / 16V10 | - Ke 17 a \ > 
Gi | 48" Fax § 1. CARRIER | ‘ Wwe tooo * ™ l + \ ; 
6 2 oon | 49) BALANCE / ; f 10000P 68 69 a it 
1 TUK : —= a YY" 2 R3190 7 \ \ 
011 41 » wok s 1K — _ 
4h - és LC305 (78: 79: 
C347 10000P vince ‘ye ELB4HO10 ELB4H010 i , 
3112 
: F 1.8K C348 AW vR331 [RED 
R31110 | © 3 aa > ARB [RED 
nage be . OK = R3113 20P oe 
2345 SS hr ? 8.2K 
27P 7\ 346 : 
4oP <= R3185 3 S R3145 
2 68k = 6399 4 
CARRIER | 5 = pind 
hr me 3.58MHz PHASE. | 27P al 
1 —@ resi 
ae 


1 a8 MYLAR CAPACITOR 


SPECIAL NOTE Aji integrated circuits and many other semiconductor devices are electrostatically sensitive and SIGNAL WAVE FORM (PROCESS) 
NON POLARITY CAPACITOR therefore require the special handling techniques described under the ‘‘Electrostatically Sensitive (ES) Devices” 


2 —# 
section of this service manual. . . 
3 aro) TANTALUM CAPACITOR Schematic Diagram 
VR301 | AUTO IRIS A-4 
_ VR302 | NTSC PED. D—5 
——————@——— 
/_———_ VR303 | CARRIER GAIN D—5 
—| VF304 | OB OFF SET D—4 
VR305 | R.B. SEP. D—-3 
8301 DEFLECTION C.B.A 
R3200 4.7K . 0318 MAI65 Boe ~ ~ P9071 INTSC) VR306 t- SET. 4 ' Oe Vp-p(20mV/10ys div.) " Die @ V/Sms div.) 21 16304 | somv/10 s div.) 
< 2 3163 D319 MA165 _ mVip-plemV/oms div. ° HS CIV. 
3 nates 3 R wi i¢ vi VR307 | Y. C. TIMING F—3 
32014.7K VR308 | COLOR GAIN 1-4 
ieee VR309 | R.B. SEP B-3 
e WA a .D. . — 
+ 372 $3157 
“8 63v $ 47K t R3169 P305 MICRO PROCESSOR C.B.A. VR310 | COLOR SHADING V__ |} B—2 
7 3 Be 180K ¢ {1 ] To 8706-1 (CHARACTER) 
? <+{ 2] 10 8706-2 (COLOR Sw) VR311 | COLOR SHADING V_ ; B-2 
P34 R3211 330K «— 3] TO 8706-3 (COLOR SW) 
3 R3167 nao0s <{4] To 8706-4 (FADE) VR312 | COLOR SHADING H | B—2 
1 5} TO B706—5 (TITLE REVERSE) 
18K “e-{é] 70 8706-6 a) t VR313 | COLOR SHADING H | B-2 2 1€301 ® 12 1€302 © 22 10304 @ 
$ R3168 — 30mVp-p(2mV/10ps div.) 1 Vp- V/I iv. \- iv. 
Nun = 150K —=—— | 7} TO 8706-7 (COLOR CONTROL) VR314 |COLOR SHADING V | B—1 mVp-p(2mV/10ys div | im Pepto /10us div. ) 200mV p-p(20mV /20us div.) 
SLAY MP +5V}> [3] TO 8706-8 (MP Sv) memes vo 
| CONTROL | R3213 10K +9V [> 9} TOB706-9 (9V) VR315 | COLOR SHADING V {| B-1 
R3206 NAN 4-0] TO B706--10(ST. BY@)) 
2K VR316 | COLOR SHADINGH | B—1 
28 
up —_— 
Ic309 DOWN VR317 | COLOR SHADING H | B—1 
MN6172 COUNTER b VR318 B— ¥4 D—2 
a3210 ©3106 e302“ AVR CBA 
10K 3 16V10 »—11] TO P6003-.1 (CP2) VR319 | B— 3 D-2 
* L171 TO pe003—2 (MP 5V) VR320 | B—- ¥2 D-2 3 1€301 @ 13 1c302 @ 23 1C304 
[couranaror| [ev ik 3] TO Pe003—316V) VR32 y 20mV p-p(2mV/20us div.) 350mVp-p(10mV/10us div.) 30mVp-p(2mMV/20us div.) 
, | Ta] To pso03—6(9V) 1|B— 1 D—2 _ 
Gy -—— aK GNO 2 OK [+5v +s 5] TO p6003- 4 (5V) we 
=a »)-— (1/4) | (0313 , —o- oon ] ¢—»16]} To P6003— 5 (STAND BY@)) VR322 |R-X¥4 D—-1 
NJM2904M rm - 
ae = oo. 6.3V100 ¥ — _ -_ 
> + | fruct | a | VR323 |R 53 D—1 
0316 cove {—__ 1 —_ AUTO! 
MAT51K 7 Oat MA ISI K VR3S9 3KB LAWC | VR324 | R-¥2 D-1 
bi : Vv 
3 AWC | . Tait 7 ANA en R327 a 
D317" " MAI65 €373 100P - Of. c374 SET vie c378 R3209 3105 “7K FUL | VR325 | R— $1 D-1 
R3165 15K a 67 | rewoa? 83175 4.7K(-—W yo000P 47K C3103 w+ — | 10000P T oop AUTO! R326 $ C3108 AUDIO C.B.A 
oe 87 : = s0v22 Pee] [mane so ad e402 1 (STAND BY®) VR326 | CARRIER BALANCE | G-1 
[sv] — | rstso |” R3174 rT Aaa B403— 1 (9v) 4 10301 @ 14 1€302 © 24 1€304 
R149 820K ak VR336 10KB At st03-7 ADE VR327 | CARRIER BALANCE | G—1 300mVp-p(10mV/10ys div.) BBO Vpol1OmV/10ys div.) Jon Ve ISmV/1 04s div.) 
- SII. 2 [RE] 7 Yc000° “ a VR328 | LOW CHROMA H-2 
5 7 J SET 
—@)—<G — eT + —— nn SATURATION CLIP 
vec 
[ — H—-2 
1C310 13239 « gS R3244 $3245 $A3249 2 83250 VR329 | R-Y GAIN 
31 am DKS BIKE 1 BOK FER 22 E.V.F 12P SOCKET VR330 | H. C. H-3 
3161 3 ) 3119 2SD636 tt 1OPIN ( NTSC} 
; TOP C3125 VR331 | RED—PHASE H—1 
it 3PIN (FILTER SWQ@) 
6 oe ® VR332 | BIAS VOLTAGE N-2 
10V47 t+ . o 
GND R3238 $ R3241¢ 3 3126 10000P . _ M—1 5 1€301 © 15 10302 49 25 1€304 (6 
93142 ) nan € | 47K fT 5.6K 9 R326 = ROS sin TO 83 —_—_—_ — VR333 | V-EDGE GAIN 1Vp-p(50mV/10ys div.) 30mVp-p(2mV/10ps div.) 5Vp-p(0.2V/20ps div.) 
18K y 24 2b 26 2 a al e naast$ asco [ VR334 V—EDGE BALANCE M—1 erent iets cetniieen dient ade ogee cate 
it [ carze 4 woK 7 SW501 
R3173 | C3122 10000P rr C3124 < P308 on fo) VR335 AWC SET M-—4 
vx 10000P ppp 1 5 
NA AWA Ny | ] R 
66) | cars 89170 R3161 at? T > VR336 | AWC SET M—4 
4 rr 0345 R3261 0346 45 at3 3 
” AMY 25C2296C an 28C2298¢ n 5 VR337 | RED GAIN O-1 
R170 22K get TBo47 | 3 c206C| “2 voc) _ysyoz VR338 | TITLE PHASE 0-3 
| ua iK ] R257}, oe R339 | FULL AUTO AWC 0-3 
4.7K ~ 6 — 
-¢ | pscz206¢7—>h | _T razae “ox | vRs 6 1C301 16 TP305 26 10303 
 fevio bow ) FE cai27 [_v25102s9 J VR340 | FULL AUTO AWC O-3 3.5Vp-p(0.1V/20us div.) 600MVp-p(20MV/10 ps div.) 1OMVp-p(2mV/20ys div.) 
R3259 ee ee 
L317 tm | cain me ry FROM A.V.RC.B.A C346 | 3.58MHz F—1 
WW G 
! R326 <-| 2 |= = To Peooa—1 (CHARACTER) C348 CARRIER PHASE G-1 
0313 
OASOAR VJBWO0276 
LENS PORTION 
AWB MODE SELECT SWITCH C.B.A 
L315 100, F309 (SW5103) 
; me 2: ls 27 10303 @ 
R3219 22K was TO R/B OK 1.5Vp-p(50mV/2ms div.} 
- 369 oepe0 R3139 © 280601 (2.R) »13] To R CONTROL 
F, sovi va 22K R3142 ¢ Cove ° fa] TO 6v 
18k 3 10V10 R3218 1K »15| To 
a t > a B CONTROL 
9337 8] To sv | 
———4 280601 (2.R) [7] TO FULL AUTO/AWC 
* ©2367 “ nod A322 10K ~) 18] TO 8. CONTROL 
— 16Vi0 Pt 19] TO R. CONTROL 
0322 110} TO B. CONTROL 
~ p3217 = MZ303A 84 fil] TOR. CONTROL 
on 22K > = 
63: +-@- 
TOR 0312 3 R314 ryt 8 1c302 @ 18 1304 @ 28 150mVp-p(SmV/10gss div.) 
AgIG) Maes 0327 L303 4 : 350mVp-p(10mV/10us div.) 130m V p-p(5mV/10ps div.) 
ELB4KO11 
27 CAMERA CABLE 
P310 
C398 G 
10000! = oe 
\ \ VAS33 IKE yt C68 +5V L2J=SS— TO NTSC 
——_—_f V--EDGE “4 6.3V47 
GAIN - 
2 R3176 2 73177 
1) 2 Ba nk aia 
5 _ G) VRQ? aa AM 9 16302 eC) “19 1¢304 © 79 OmV/10j05 div.) 
V~EDGE : i . . i . i OOmVp-p(10m yis div. 
mT C366 BALANCE “ basset 3183 20mVp-p(2mV/10us div.) 800mVp-p(20MV/10us div.) 300mVp-p 
0.47 I $ R3178 p 5.6K 
= C399 , > 4.7K 
T 27° & R3145 
. $ 33K r vr 
ioe “es 62 I th R3180 $ 3 A3182 
ee 7 ~ -—@ yey 15K ¢ y 33K 
=a ; 
10 1€302 46 20 1¢304 (@ 30 TP306 
150mVp-p(5mV/10us div.) *  700MVp-p(20MV/1015 div.) 100mMVp-p(S5MV/10us div.} 


4.4 


SIGNAL WAVE FORM (PROCESS) 


31 TP307 411 51 1C307 61 1C308 ©) 71 10311 @ 81 1€312 @ 
200mVp-p(SmV/10us div.) 5Vp-p(0.5V/0. 1ms div.) 200m Vp-p(10mV/20us div.) 250mVp-p(5mV/10ps div.) 150mVp-p(5mV/1Ous div.) 300m Vp-p(10mV/10ps div.) 


c306 


8 
& 
| | 


32 1€305 42 | 52 1c307 62 1C308 @ 72 1c311 @ 82 40mVp-p(2mV/10js div.) 
40mVp-p(2mV/5ms div.) 6Vp-p(0.5V/20ms div.) 700mVp-p(20mMV /5ys div.) 700mV p-p(20MV/10ps div.) 150mVp-p(5mV/10ps div.) 


. oa ‘ 
. 
; ‘ 


53 1c307 ® 63 1.4Vp-p(20mV/Sms div.) 73 1311 @ 
250mV p-p(5mV/20us div.) 3.3Vp-p(0.1V/20us div.) 


g 
8 


33 1€305 &@ 43 
380m Vp-p(10MV/10ps div.) 


1C306 83 = 30MVp-p(2mMV/10ps div.) 
6Vp-p(0.5V/20ms div.) 


i” 
@ 


64 TP312 74 10311 84 TP318 


44 1c307 @ @ ; 
900m V p-p(20mV /Sms div.) 1.5Vp-p(50mV/5ms div.) 150mVp-p(5mV/10us div.) 1.1Vp-p(20mV/10us div.) 


34 1C305 54 


© 
130MVp-p(5mV/10ys div.) 


t 
6Vp-p(0.5V/20ms div.) 


= 


55 1C307 © 65 TP313 75 10311 


35 1C305 © 45 
100MVp-p(S5mV/20us div.) 150mVp-p(5mV/10ys div.) 50mV p-p(5mV/10us div.) 


l 
250mVp-p(5mV/10ps div.) 6Vp-p(0.5V/20ms div.) 


36 1c305 46 1C306 56 1C307 @ 66 1C310 (1) 76 1C312 © 
20mMVp-p(2mV/10us div.) 300mVp-p(1OmV/10us div.) 3Vp-p(0.1V/5ms div.) 1.3Vp-p(50mV/10ys div.) 


37 10305 


@ 57 1307 67 1C310 @ 77 10312 
100mVp-p(SmV/10ps div.) 


) 
400mVp-p(20mV/10ys div.) 4Vp-p(0.1V/5ms div.) 0.6Vp-p(50mV/10us div.) 


38 TP309 6Vp-p(0.5V/20us div.) 48 10306 @) 58 1€307 @ 68 1c311 @® 78 1C312 
700mVp-p(20mV/10us div.) 500m Vp-p (50mV/10ps div.) 100mVp-p(5mV/20us div.) 


enn 


39 1C306 @ 49 1306 @ 59 1307 @ 69 1c311 @ 79 1c312 @ 
6Vp-p(0.5V/20us div.) 6Vp-p(0.2V/20us div.) 700MVp-p(20mV/10ps div.) 500mVp-p(50mV/10ps div.) 80m Vp-p(2mV/10ys div.) 


40 10306 42 50 60 TP310 70 10311 80 1C312 @ 
40mVp-p(2mV/20us div.) 


1c307 © 
6Vp-p(0.5V/20):s div.) 2.2Vp-p(0.1V/20:s div.) 250mVp-p(5mV/101s div.) — 100mVp-p(5mV/10us div.) 


4-5 


5 3 
7 
= s] 
& @ 


me 


ca 
wn @ 
xf SS 


Tv 
u 


NO 
re 


SPE L 

$i. £ 

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B 
4 


Bee 


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g 


nv 


sh 


5 


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8 470 


ba 


Sow 


ON 


i 


Vo-p(10mV/10us div.) 
Jpe-plamV/10us div.) 
(pp(2mV/1Gus d 


MICRO PROCESSOR SCHEMATIC DIAGRAM 


am , 
ee 
es pe 
| 
| 
D714 MA151K - 
Ps 
| a 
5 >I 3 
Lt | 
D704 MA151K | 
D703 MA151K . 
Pt 
py | 0702 MAI51K 
| ae | 
— py D705 MAISIK 
wr 
pp D715 MAISIK 
Pt R744 22K 
AAA, DISPLAY 
08 +08 joe dos 35s 10.2 2 ‘ea 10.2 2 ~O wy POSITION 
26 (25 (24 mee 23 22 21 20 19 18 17 16 15 ummn('14 C710 27P 
R709 DATA DATA DATA DATA DATA DATA TALLY (H)} C.G. SERIAL SERIAL 0.3 0.1 0.4 1 0.) 0.1 0.0 0 
OUT OUT OUT OUT OUT OUT CONTROL DATA DATA C713 100P ; ; . 0. ; ; ‘9 0.1 
> WA 0Q7 OK CG IN OUT 13) 0 2120) —=(1 918 p17) 16) {154 132) 
33060110 R) MONITOR (H) CONTROL DAO 
5 DATA 
4 R707 0.798) DATA out SERIAL CLOCK (12) ) 2 DAI IN PUT V. SYNC IN 10}. 
q . 
«< 
S R704 > 43 
a701 27K R711 0(29 EE (H) (11 3 0 23) DA2 H. SYNC IN (9) 0709 
4.7K O.R 
2SD601 (QR) 2500 
4 0) - 
( | 0.939) pata ouT INT (10 0.4(24) TITLE COLOR 1 (8) ayy Nhe 
1C702 22K 
R703 PD7508G-606-00 +P702 
24K 4.4 7\2.6 70.0 AN1L8 9 0/58) pa 
WA 8 7 6 _ C704 gap pe) GNO CL2 (9 25) @)o. R730 | R731 
R701 56K | 56K 
vcc = Q710 
om 15K D701 R759 10K 0.1 fy-~ \ 280601 
MA y 32) x1 8) 0 0(26) DATA TITLE COLOR 2 Oren wt) (2.R) 
151K 1.6 VR701 SEEKH INPUT —o 
se 44 4 | 100KB 255KHz] 
$ 5 "63 vo (7 0(27) (5)0.1 
Ja702 x7o1] — TP701 
Vv 
y a) 
6K 0094 34) x2 6)0 (28) Daa (4) 0.1 
1C701 R716 10K 
AN6914S 
A R C703 SOP 0(35 cL (5 J CH) 0.1 29) DAS TITLE REVERSE (L)(3 44 
C705 — 
3 32.768KHz li 
R705 120K 0/38) FADE CONTROL 4)0 0(30) TITLE ON (H) (2 
= C701 0.1 R706 4.4 
100K 0.6 : 
+ =H WW 447) FADE CONTROL RESET (3)2 31) DAG G)o 3 ne 14 
C702 
6.3V33 
u 38) REC (H) SERIAL VCR (L) (2 a 0.182) ————? 
CHARACTER Q71 
R710 LDt ADM vcc SIGNAL 2SD601(0.R 
4.7K 
> AW 99) TITLE COLOR (L) 1)0 ($3 —{ 4) (35) (36 {37 (3839) 40} m2) 
a DATA DATA DATA DATA PAUSE STAND EDIT EVF FADE SERIAL POWER 0 44 0 0 0.1 0 4.4 0.1 0.1 10703 MN1237E 
+5V R712 & R713$ R743 ears IN IN IN IN (t) BY(H) (H) = (L) = BAR (L) VCR (H) LED R747 2 
DEFLECTION C.8.A B701 SERS S6KS 56K S > 56K 40 41 42 43 44 45 46 47 48 49 50 51 52 ®) 100K > 
127 LIT 2 10 0 0 0 0 44 Jaa Yo3 To c709 |4 R746 
TO P609-16 (EDIT @)) |16 be | 6.3V220 3 3 1701 
! , ~ >) 100 4H 
TO P609-15 ( KEY IN ) 115; 
rw q 
TO P609—-14 ( KEY IN) |14}< D709 R742 ™ 1C704 
| 10K + h uPD4066BG — 
TO P609-13 ( KEY IN) 113 }-« 
— ; piky $ F708 00 . D711 MA1120 — 
2 TO P609-12 ( KEYIN ) | 12 $s 
TO P609-11( KEY SCAN ) | 11 p> oo A 
}— ed 
TO P609-10( REC (H)) |10 e D706 MA165 — 
TO P609- 9 ( KEY SCAN ) | 9 > ily 
TO P609-8( KEY SCAN) | 8 }» A R745 $ 
I > 
TO P609- 7 ( KEY SCAN ) | 7 }> eee | 2.2K F 
_——~ « 
TO P609-6 (KEY SCAN) | 6 }» > 
re] _ AWA 0708 
_ TO P609-4 (KEY SCAN) | 4 }> Q716 2SD601 (QR) 1OK] (Q.R) 
TO P609- 3 (INTERVAL (R) | 3 b> 2SD601 (Q.R) R728 477 
TO P609— 2 (INTERVAL (S) | 2 }» 4.7K MA1120 —— 
od YP 
TO P609-1 (SERIAL OK (H)) | 1 


SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
therefore require the special handling techniques described under the ‘‘Electrostatically Sensitive (ES) Devices” 
section of this service manual. 


.8 
24 


A DATA DATA DATA DATA TALLY (H) 
OUT OUT 


) 


\ DATA DATA DATA 


tN 


6 0.6 im) 0.2 2 4.4 2 


23 22 21 20 19 18 17 16 


DATA 
_G. IN 
CONTROL 


C.G. 
OUT OUT CONTROL 


OK 
MONITOR (H) 


PAUSE STAND EDIT EVE 

IN IN (u) BY(H) (H) — (L) 
43 44 45 46 47 48 49 50 

1.2 1.0 0 Q 0 0 44 4.4 


FADE 


2 
15 
SERIAL SERIAL 


DATA 
OUT 


SERIAL CLOCK (12}- 


SERIAL VCR (L) 


R744 22K 


C713 100P 
13) 9 


EE (H)} (11 


INT G 


4g TP702 


VR701 
100KB 


RESET (3) 


LS) 


—(29) DAS 


G) 


SERIAL POWER 


BAR (L) VCR (H) 


51 
0.3 


R755 
}OOK 


R} 


LED 
52 
0 


6.3 


DATA 
INPUT 


> —_iaf 
“ NS 


* 708 
-T 6.3V100 


DISPLAY 4 
POSITION 

VR702 
3.3KB 


C710 27P 
eA) 


V. SYNC IN (oy. 


0.1 


(3) 


8 


H. SYNC IN oO 


2S80601(Q. 


TITLE COLOR 1 oe 
R753 
22K 


@)o.i 


TITLE COLOR 2 (6) 
R754 22 


(5) 0.1 


Q709 
R} 


i 


a 


&) 


Q710 
280601 
(Q.R) 


D713 
MA151K 


Q714 
2SD601(O.R) 


~ 7 
L..——J 


r- 


AAA—& 


9 0 


1C705 AN9OB82S 


S R743 56K 
> 


Yr 


L702 50; 


tt, 


$ R735 
$F 56K 


(4) 0.1 


TITLE REVERSE (L)(3 4.4 


TITLE ON (H) (2 


(1) 9 


CHARACTER 
SIGNAL 


vcc 
(46 )mmme( 37 (38) 39 m4 m4 1 me(42) 
O07 0.1 0 447 O17 O01 
1C703 MN1237E 
® 


c709 [+ 
6.3V2208 389 L701 


R734 


56K 56K 


Q712 2SD601 


Q711 gh (OR) 
2SD601 
(0.R) 


—_—__—-® 


Q717 
28D601(0.R 


R747 : 
100K « 


10704 


HPD40668G 


D711 MA1120-—S>} 


+ 


D706 


MA165 


Q706 
2SD601 (QR) 


R728 
4.7K 


R717 
22 


R725 | 
5.6K § 

Q704 a7 
2SD601 (Q.R) 


D710 
x mares y 
, R740 2.2K 
2 10K 


A 
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> 100 


yr 


D707 
A MA1120 


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(.R) 


Sw701 


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P704 


PROCESS C.B.A 

TO P305— 1 (CHARACTOR ) 

TO P305—-2 (COLOR SW) 

TO P305-3 (COLOR SW ) 

TO P305—4 ( FADE ) 

TO P305—5 (TITLE REVERSE 

TO P305-6(G ) 

TO P305- 7 (COLOR CONTROL) 

TO P305— 8 ( MI. COM. 5V } 

TO P3059 ( 9V )} 

TO P305—10 ( STAND BY (H) ) 
POWER ZOOM SW C.B.A 

G 

Mi. COM. 5V 

TALLY SW 

9V 


DEFLECTION C.B.A 
TO P612- 2 ( STAND BY(L)) 
TO P612— 1 (12V ) 


DEFLECTION C.B.A 
TO P613-3(G) 
TO P613—1 ( V.SYNC ) 
TO P613—2 (H.SYNC ) 


AV.RC.B.A 
TO P6005—1( G ) 
TO P600S— 3 ( V.SYNC ) 
TO P6005— 2 ( H. SYNC ) 
TO P6O0S— 4 ( TITLE PAGE ) 
TO P6005— 5 ( TITLE PAGE ) 
TO P6005- 6 ( TITLE PAGE ) 


DEFLECTION C.B.A. 

TO P608— 10 ( CAMERA/VCR ) 
TO P608— 9 ( TITLE DISPLAY) 
TO P60B— 8 ( E.E.G)) 

TO P608-7 ( BACK UP (H) ) 
TO P608—6 ( POWER LED ) 
TO P608— 5 ( FADE ) 

TO P6OB— 4 ( E.V.F INF. ) 

TO P608—3 ( EXT. TITLE (A)) 
TO P608— 2 ( RESET ) 

TO P608— 1 ( Mi. COM. 5V ) 


CAMERA CABLE 
5.1.0 


G 
S.1.K 
12V 
PAUSE 


A.V.RC.B.A 
12V 
G 


AUTO FOCUS LENS C.B.A 
+B 


semiconductor devices are electrostatically sensitive anc 
therefore require the special handling techniques described under the “Clectrostatically. Sensitive (ES). Devices — 


section of this service manual. 


MICRO PROCESSOR CBA. PGOO5 


TO 8705-6 (TITLE PAGE)| 6 b-« 
TO B705— 5 (TITLE PAGE)| 5 | - ; —— 
TO B706— 4 (TITLE PAGE)! 4 | : cece 


TO 8705-3 (V.SYNC)) 3 A 
TO B705— 2{H.SYNC)| 2 


==" 6008 


06008 OASOAR yen 


eye Poe oe es iq 
To e705 -1(G)} 1 | 7 (C6003 ViB88302 _ 


5 gil. 
FROM DEFLECTION CBA. B6QD1 penod 1 
FO P6T1—121LDH 112 ag RE tee eee RE CHE OASGAR i ~ | 

& 


9.01 SPIE s ~ 4 

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pos x GOK AD i ogoo4 : C6012 6.3V22 | 

\ 


1-10(DATA WRITE (O)}1 1 a600s 
{2508744 2808744 C6006 a 
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(DATA WRITE cyt 4 eo 7 | ee j$954 ¥ 670K 4 1 OTK bd 
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FO PEI TIGHT IN OHARACTER 56002 % RGEOIS 10K R6002 P6022 10K} 6024 10K cod 
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PROCESS C.B.A. PAG04 3 A 


TO B3O3-- 1 (CHARACTER) 
TO B303- 21G) 


BY 
STAND BY i5V 
QV 


a on 
6008 ° = 
250607 (GRI 


4-8 


S. 1.0 P705 
G A [aris Y SW (4B) 
3.) STK P704 2 | TALLY SW 


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5) PAUSE 21°G 4 | ov 
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703 
a MAIS 1K 


tS) eee 
R749 27K 100K" 
ONO MW 


_ R748 100K 


“F730 1 5K 
R751 1.5K -pya,y 


Mat i 120 


R756 TOK 


280601 2, A) 


m%, BRE S gy, SOF oP te 4 € 
Shoe: Sig Yat a 


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FO B601—5 (KEY IN)}13 ———_—___-__, 


| 


[2 eae meen mennen ena A NASA OHASHI SRNR ESE 


TO B602— 6 (KEY oo 


era aL tie vette ene ; 


TO B6O2—5 (KEY SCAN) Le a + 
TO BGO02— 4 (KEY SCAN)| 


TO B601— 4 (KEY IN)| 7 
TQ BEOI—2 UCEY ol 6 


OE ENA EO IE eH EUR Rtal ancnommee 


lise eMac SDREONND ei ir seen Oma eee mI on renee Mier AAEEEN 
a anne _ 
wae: : 7 % 

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a 7 


i 
f 
i | : 
TO B601—1 (KEY SCAN) = | eo | | 
: i \ : ; i , i 
: | i : | 
70 B602— 3 (KEY SCAN) co. Lo e. 0; }, &b 4, 4 4 
E a i : 
geao | 


i 
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7 rc 
t 
t 
i 


LT DE OKT opel _is Sr) a) covor]. ssf ur 
TO P801— 1 (KEY IN) | at— | LLLLCO—C—“‘“=#OO a 
POWER ZOOMCBA. | 

i 


vase ite in atari ut 


KEY BOARD SCHEMATIC DIAGRAM 


DEFLECTION C.B.A. B7201 
<> TO P610-23 (KEY MATRIX}] 23 
+ TO P610-22(KEY MATRIX }| 22 


} 


— 


| rere 
D7201 MA151A 
Pt 


~+—> TO P610-21(KEY MATRIX] 21 


Lf | 
Ton (eg 7207 MAISIA 


+> TO P610-20(KEY MATRIX )} 20 


<> TO P610-19 (KEY MATRIX )] 19 
<> TO P610-1g8 (KEY MATRIX] 18) 
<> TO P610-17 (KEY MATRIX)] 17] 


«t—» TO P610-16 (KEY MATRIX)] 16 
+> TO P610-15 (KEY MATRIX)| 15 
<> TO P610-14 (KEY MATRIX)| 14 


*— TO P610-13 (KEY MATRIX)/ 13 


t+» TO P610-12 (KEY MATRIX)}] 12 
<> TO P610-11 (KEY MATRIX) 11 
<> TO P610—10 (KEY MATRIX)| 10 
~t—» TO P610— 9 (KEY MATRIX) 
~<t—» TO P610- 8 (KEY MATRIX} 
~+— > TO P610— 7 (KEY MATRIX) 
~«—» TO P610-- 6 (KEY MATRIX) 
~t— > TO P610— 5 (KEY MATRIX) 
<> TO P610— 4 (KEY MATRIX) 
+ > TO P610— 3 (KEY MATRIX) 
+> TO P6102 (+B (5V)) 
+ > TO P610-- 1 (G) 


py D7211 MAISIA 


py 07202 MAISIA 


> g07208 MAI51A 


MEMORY 


mt 07204 MAISIA 


Let 
07205 MAI51A 


d 


07208 MAISIA 


D7209 MAIS5SIA 


D7206 MAI51A 


D7212 MAI5S1A 


ryv¥y¥yvy 


D7210MA151A 


o-+ 
O-*é 


-[»]ol>felo}~fofe] 


I> 


o— 


—— 


: 


—oO oO 


4 


wp 7213 MAISIA 
wr 


SIZE 


O-+—? 
O-+—4 
Oo-—-+ 


gd 


x—— 


c 


Lo oft 


[SPACE RETURN 


<_ 


SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
therefore require the special handling techniques described under the “Electrostatically Sensitive (ES) Devices” 
section of this service manual. 


AUDIO SCHEMATIC DIAGRM 


— 
aaa R401 4.7K 
C407 10V220 R403 100K B402 PROCESS C.B.A 
ce Ra12270 L401 1mH 1 | TO P306-- 1 (STAND BY Hi} 
AWW <+—? 2 |TO P306- 4 (G) 
c4o8 [ , 2 | 
2R411 R414 g 10VE_ 
> 
2 $ 210K Bake 47 
— D403 MA27T-A R410. 2.7K B403 
caoa +—i¢ AAA, ¢ TO P306-2 (9V) 
t+ D402 01 0403 FADE) 
| OAQOAR Lens 9,6 | 28624055 nats 100 [2 |To 306-3 
hl « Qe ° WN 
406 C411 68P 
4 h.. 
+ 6 > 
a 100K R408 270K soy! 
ANN c409 a t* 
16V22 
1 aors | gi? 18%? 
D401 05 680 ¢ 
OASOAR 6.3V CA06 
50V2.2 
TIT 
a 
(C401 »_ TO MIC 
AN6558S FS sTEREO (R) 
FF = STEREO (L) 
2R402 
56 G 
iI x $a? — 
iI me CA02 2 100K 
CAMERA 50V 1 < q 
R419 > R425 56 LCH 
1 3 270K at 
C414 
bR418 0413 [+ 02 st C417 50V1 
> . 50V2. 
$ 100k 50V 14. MA —H—_ 
ra 
R420 680 L Prey RCH 
, Th 
& ST/MONO 


402.50V1 


D401 
OASDAR: 


POWER ZOOM SW SCHEMATIC DIAGRAM 


MICRO PROCESSOR 

TO P705 PIN4 (9V) 

TO P705 PIN2(TALLY SW) 
TOP708 PIN 1{TALLY SW (+B)) 
TO B709 PIN 3(KEY SCAN) 

TO B709 PIN BIKEY IN) 


P80" 
9 
Pig 
Aone 
6 ua 
5 be 
4 
paral 
sws01 
[3 >* "| REC/REV 
2 8) 
| 
S| 
+——O! swso2 
TALLY 


AAA 


CAMERA UNIT INTERCONNECTION SCHEMATIC DIAGRAM 


4-10 


AUTO FOCUS LENS PROCESS C.B.A VEPW0256 DEFLECTION VEPW0257 KEY BOARD VEPWO0264 
P302 P610 lo 
FILTER Sw] —— —Winceasw a] 1 PoNOt vuswos3ah— 75 J 
A.F/M.FI—— L-——8 2 1AFMF. KEY SCAN| 2 2 {KEY SCAN 
A.F. STANDBY J—~ | 31 A. F STAND BY KEY SCAN| 3 3 [KEY SCAN 
FILTER SWI-— y———4 A/FILTER SW KEY SCAN| 4 4 ]KEY SCAN 
AWC SWI H-— 1 5] awc sw P303 KEY SCAN| 5 5 |KEY SCAN 
AWC SW | — 46 [AWC Sw vss 1| CNO006 VJBWO333 KEY SCAN| 6 6 |KEY SCAN 
IRIS CONTROL J—4 \__4°7 TRIS CONTROL 1.8V | 2 KEY SCAN| 7 7 | KEY SCAN 
IRIS DRIVE J —4 W——# 8 | IRIS ORIVE 5v| 3 KEY SCAN| 8 8 [KEY SCAN 
IRIS CONTROL JI—— K-49 [1RIS CONTROL ov] 4 KEY SCAN] 9 9 [KEY SCAN 
IRIS DRIVE J— ho] tris DRIVE ints | 5 KEY SCAN] 10 10| KEY SCAN 
P309 6v | 6 KEY SCAN/11 11 [KEY SCAN 
7 Gf-—_ —1ilc MICON 5V | 7 KEY SCAN] 12 12] KEY SCAN 
MICON PRINT R/B O.K J-——~ L-—4 2]R/B O.K IRIS DELAY | 8 KEY SCAN | 13 13] KEY SCAN 
VEPWO0263 wrod R. CONTROL J |——4 3|R. CONTROL cp2 | 9 KEY SCAN | 14 14| KEY SCAN 
[ +B 12V [1 $—~ 7—{ +8 12v ‘| 6v J \——4 4] 6v cP1 [10 KEY SCAN|15 15] KEY SCAN 
ia G|2j—” UG | B. CONTROL J—-~ -——4 5| B. CONTROL FADE {11} KEY SCAN|16 16| KEY SCAN 
| 6V 6| 6V COLOR SD [125 9|coLor sD KEY SCAN|17 17| KEY SCAN 
AWB/FULL SW J|—4 47 [ AWB/FULL SW W.H.O [138 8]W. H. D KEY SCAN] 18 18] KEY SCAN 
B. CONTROL J——4 #38. CONTROL COLOR SD [14] 7|coLor so KEY SCAN|19 19[ KEY SCAN 
R. CONTROL J—4 \ 19 R. CONTROL COLOR SD | 155 6 [COLOR SD KEY SCAN|20 20] KEY SCAN 
B. CONTROL J— 410] 8. CONTROL DARK SD [16 5 [DARK SD KEY SCAN |2 21[ KEY SCAN 
R. CONTROL J— ii] R. CONTROL COLor sO {17} 4|COLOR SD KEY SCAN |22 22[ KEY SCAN 
CAMERA CABLE CAMERA LUG IMAGE [18 3[LUG IMAGE KEY SCAN | 2: | 23] KEY SCAN 
P310 ABLE DARK SD {19 2 |DARK SD 
1]G OPIN AB.O 120 1|ABO TUBE SOCKET VEPWO0109 
. 2| NTSC 1PIN G1 G1 
DEFLECTION PRE-AMP C.B.A p614 G2 G2 
VEPWO257 P601 VEKWO701 | Verivoaso w.B{ PRECAUTION(R)] 1 CNOO7 VJBWO0337 1ifw.B. PRECAUTION (R) G4 G4 
TARGET | 1 [41 -CR20L GH 1H TARGET P301 AF STAND BY() 2 NOJA.F. STAND BY © G5 G5 
G| 2442 2H G | PRE-AMP OUT -—6 on202 vexwocss 8 -1[PRE-AMP IN | COLOR TITLE| 3 9 ICOLOR TITLE K K 
yovl3 a i fe — 7 ass 2/6 | W.B[_PRECAUTION(B 4 8 [W.B. PRECAUTION (B) H H 
| 1 FILTER SWQ) 5 7 |FILTER SW®) H H 
: ra TiSc 5 6 6 G6 (F.B.1) G6 (F.B.7) 
(_ na COLOR TITLE] 7 5 {COLOR TITLE 
(eoaoise eis | Arm ACG seas 
P6003 8302 EXT TITLE] 9 3 EXT. TITLE ti} fas LIGHT | 
P602 ©) cP2 1}CP2 LOW LIGHT|10 2 |LOW LIGHT +B 2 
THERMISTOR “I —=— MICON 5V 2|MICON 5V EXT TITLE {11 1 JEXT. TITLE 
V.COIL | 2 6V 3|6v p6o4l CN705 CAMERA/VCR SW VEPWO0278 
Vv. COIL | 3 5V 4}ov 3054 woos viewo336 (ea MICON PRINT VEPWO263 B701]  vyawosss P609 CAMERA| | fH45-———445H1_1 [CAMERA 18708 
H.COIL | 4 DY STAND BY (5V) 5 [5v CHARACTER CHARACTER SERIAL OK 4 1 SERIAL OK® VCR| 2 JH46-———_1464] 2 [VCR 
H.COIL| 5 ov 6 [STAND BY (SV) COLOR sw] z 2 [COLOR SW INTERVAL (S)| 2 | 2 [INTERVAL (S) VEKWO692 
G{6 COLOR SW] : COLOR SW INTERVAL (R)] 3 3 [INTERVAL (R) B6019 croo3 VEKWO714  CNOO4 VEKWo715  FTRONT (MICON) OP VEPWO265 
Peoos CN303 VEKWO695 8303 FADE|4 4 |FADE KEY SCAN] 4 4 |KEY SCAN KEY SCAN] 1 Ha? _ ow |G B709 
P607 [CHARACTER | 1J—127+-» —~27-4 I[CHARACTER | TITLE REVERSE| 5| 5 [TITLE REVERSE KEY SCAN| 5 5 |KEY SCAN KEY IN| 2[H448 a {5241 1 [KEY IN 
[ntsc] 1 Ha — I G| 29-428 284 2[G G/6 61G KEY SCAN | 6 6 |KEY SCAN G| 34Ha9 n= | K4544h 2 [KEY SCAN 
[_ G] 25 COLOR CONTROL] 7 7 [COLOR CONTROL KEY SCAN| 7 7|KEY SCAN KEY IN| 4 FH50 3 | —H604] 3 [KEY SCAN 
CN301 VEKWO696 +8 (5V)} 8 8 [+B (5V) KEY SCAN| 8 8 |KEY SCAN KEY IN| 5-51 |4-—4 M55Hy 4 [KEY SCAN 
P611 B6001 gv| 9 9 [av KEY SCAN | 9 9|KEY SCAN KEY IN| 6 F-52 | 5 |+-—4 M4741 5 [KEY SCAN 
G]1H64 6H 1[c STAND BY @)] 10 10|[STAND BY @® RECG) 10 h0/REC@® [6 }-—4 M48 6 | KEY IN 
DATA WRITE (5)| 29474 17+ 2 [DATA WRITE (5) KEY SCAN [11 11[KEY SCAN B602 [7}+-— MS0H 7 {KEY IN 
DATA WRITE (6)| 3 —-48N (8 3 [DATA WRITE (6) P6001 B703 KEY IN{12 12| KEY IN KEY IN| 1 9453 8+ —1—~{61 48 8 {KEY IN 
DATA WRITE (7)| 4JH19 5 L9H) 4 [DATA WRITE (7) [ 12V an (29-4 1 i2v ~ | KEY IN[13 13] KEY IN KEY SCAN| 2 [454 [9 +}— M56} 9 [KEY SCAN 
+B (5V)| 5 FHION ciege {10-8 5 [+B (5V) t G| 2§—30 Lao 2|G | KEY IN| 14 14]KEY IN KEY SCAN} 3 F995 10 | {5748 10] KEY SCAN 1 J4784 
DATA WRITE (3)| 6 F411 _0339_ Il] 6 [DATA WRITE (3) KEY INI 15 HSfKey IN KEY SCAN| 4 J-+456) ii}+-—4 M538 11] KEY IN B. CONTROL] 2 |47/ 
DATA WRITE (4) 7 J124 M124 7 [DATA WRITE (4) P6005 8705 EDIT@®)| 16 16/EDIT@® KEY SCAN| 5 psf LE 12+-— N458Hf 12] KEY SCAN R. CONTROL ana 
DATA WRITE (1)| 8 [13] M134] 8 [DATA WRITE (1) G] 1 Hat Hp aif 1[¢ KEY SCAN 6 [458 B}-— 5113 [KEY IN +B svi 4 [454 
DATA WRITE (2)| 9 J14¥ M14 9 [DATA WRITE (2) H. SYNC| 2 J—132 33+ 2[v. SYNC B704) ySowos34 —.P608 BACK UP (+B)| 7 $459 GAIN UP| 5 J474H 
DATA WRITE (0)} 1091154 M154] 10 [DATA WRITE (0) Vv. SYNC| 3J—133-—4 32-9 3 | H. SYNC MICON 5V] 1 1 [MICON 5V a 10 
ADM {11 f-16 M16+f 11} ADM TITLE PAGE| 4434-7 {34+-—§ 4 | TITLE PAGE RESET | 2 | ? {RESET P06 | CN5O1 VEKWO709 ) PREAR SIDE VEPWO0259 
Loi }i2psi7r MI7HE 12} LD1 TITLE PAGE| 5135} CNOO3 VEKWO714 N435-—§ 5 [ TITLE PAGE EXT TITLE) 3 3 (EXT. TITLED G] 1 F469) {708 GAIN UP© N/P 78 
] TITLE PAGE| 6-36 f 136-9 6 | TITLE PAGE FADE BAR| 4 4]FADE BAR GAIN UP) 2 70 69H G "R CONTROL [177 
13] . POWER LED] 5 5 [POWER LED POWER LED (R){ 3 {71 734] STAND BY) +B (5V) 4764 
CAMERA CABLE CAMERA : 

. CNOo1 [12 P701 CABLE BACK UP@) 6 6 BACK UP@ POWER LED (G)| 4 f472 71} POWER LED (R) B CONTROL [175 
MIC JACK STEREO VEPWO262 PROCESS C.B.A P306] VEKWO707/7) 4 1]s.1.0 SPIN EEL|7 TJEEL STAND BY ()] 5 JH73 \ 7244 POWER LED (G) GAIN UPJ{74} 
P.C.B VEPWO280 Ceo lo706 1 B404 8402 STBY H] 1 $4374 0) 21G SPIN AF. STBYO) 8 8 |A.F STBY © E.V.F 12P SOCKET 

AUDIO 1 [Aubio [ sTBY@)| 1437 OV | 294384 9 | 63 [six 4PiN | TITLE DISPLAY] 9 9 |TITLE DISPLAY 5 {63} ==> VEKWO717 cnoo VEKWo71a pap1 POWER ZOOM VEPWO260] 
AUDIO 2 [ AUDIO | G| 24440! FADE | 3439} 8 | 4[12v 10PIN c/v sw} 10 10|CAMERA/VCR SW H. DRIVE] 1 F624 M462, IM] 1 [KEY IN. 
G VY Ute roe G| 4§40r [7 | ———4_5 [PAUSE 6PIN B707) yiscworos. [P813 NTSC] 2463-4] = M166 aya 60H 2 [KEY SCAN 
EKWO705 12P VEPW0256 6 | H. SYNC] 3 1 |v. SYNC Gi3k———s 7 ) ® ® FROM 4144 3 [TALLY SW (+B) 
B401 CAMERA 8403 SOCKET [p307 H P705 V. SYNC] 2 2|H. SYNC V. DRIVE] 4 [64 {68} 4 Dat i 4244 4 TALLY SW 
CAMERA CABLE | [STEREO (R) SPIN [ av | 19-138 4 NTSC 4 —{41Hf 1 [TALLY SW (+8) an Be ee 31G V.DRIVE| 5 FH65+4 65 5 10}4-= 2 44H 5 ov 
jae 2 [STEREO (L) 7PIN | FADE | 2139 + 2|G 3 | 4248 2 |TALLY SW B702 CN701 P612 ev | 6 F664 164} (6) 3 nT 3 7944 6 |ZOOM MOTOR 
o—7 316 OPIN 2 | 9 (VI) 4344 31G Tav] 2 pe hav | REC LED| 7 F467 7)(8 i! 4 4348 7G 
CN402 VEKWO720 a 80H 1 | 44H 4 [ov STAND BYO) 1 f 2|[STANDBY@ __| 12v | 8 H68 L —i59H] 8 |BACK UP (+B) 
1 +804) 9[Z00M MOTOR 
CNOO1 _VEKWO707 J P802 
A. = 1|c 
“4 2 |Back uP (+8) | 
J CNOOS VEKWO699 
A | B i re i D I E I F i G I H I I I J | K a 


ELECTRONIC VIEWFINDER SCHEMATIC DIAGRAM 
ELECTRONIC VIEWFINDER INTERCONNECTION 


MN y~ _ 
R901 22K 0901 § R907 SCHEMA I IC DIAGRAM 
< C909 
tee 2SD662 (R) S 10K 250V0.1 L@ 
C901 10V47 
d _— 
> 
pee bere C907 J+ VR902 S00KB 
; R903 C902 63V10 FL t > R912 
680 330P RQ11 ‘ 
| [BRIGHT | 1M 2 1.5K 
tr 71T U 
L901 390. R908 R910 
Sy e > A 33K 1M 
C.R.T 
ra C903 + D902 3 
R904. g  16V470 T- y  Smaie2 C908 
> 
| 2.2K S \ R909 ® 50V0.047 
+—+— Q903 22 
2SD968(R) tr C906 
; ely ) — 63V22 
C904 10V47 L 
am ~ 
a 
0909 901 ‘ 
2SB709A (R) MATSIK 
EVF 12P CABLE - 
R905 th ; 
sw901 aya R906 $ ELH5L103 
er 1K ¢ or LH5J05A 
= d 
4 bg OT P901 
L904 
| ot N+ EIR-70G.0068 : 2 1 | NTSC @ P904 
VRGO1 
V.COIL [H-LEVEL| : se 2| H.DRIVE | @) H. COIL {1 
1KB H-LEVEL : h nhs Lee ae c913 
13) | ' —— 250V0.8 7%" 3] 9V (9) H.COIL |2 
ot v a ' 4] GND V.coIL |3 
| - pane R929 2.2M(1/4) 
| ) ci “C—O 1 5| V_DRIVE v.coiL |4 
2) 100V 0.0039 |. VR903 2MB = R930 2.2M(1/4) ® 6| v. DRIVE | @) crt 
H.COIL | On , EV | R931 c912 Cable SOCKET 
| — 0903 og! Focus | 1.8M (1/4) = 1K1500P — EVE pin No. GI rH 6 
ic : . $1B01-01 _"F 1k0.0039 VEPW0266 Go 34 
i 
L I th G3 24 
OO ae P3803 A Ho 
. TALLY LED K H 7 4 
R927 1K Bae = H 4 
| > AWW 2 BRe098S p H 5 
; 1 
1 P902 E.V.F LED 
: VEPW0261 
[R923 R924 [R926 B901 TALLY LED] 1 J-— 
R922 < < : : 1 
3 iK> 3 82k $ 8K 3 '* eo  fratey Leb] 2 | of veKwo703 
j \—42 [TALLY LED] G 3 CN901 }— 
> 
$ c914 50V1 C915 SOV R926 5.6K (C VJBWO0266 : ! 
R916 re a =H WwW a) 2908 FLASHING LED 
*916 2SD601 (Q.R) | 1 C 1 
D904 TLG124A P902 — —) A B D 
lig. oO a906 ( a Q907 
ON) al 2SD601 (Q.R) 2SD601 (Q.R) 
Kh TIT TTT Tr 


NTSC 
H. DRIVE 


ay EVF. LED CIRCUIT BOARD 


l 

2 

3 
4|GND 
é[v-onive (VEPW0261) 
P902 

TALLY LED 


] 
2 
3|G 


P903 


11 TALLY LED 


SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
therefore require the special handling techniques described under the “Electrostatically Sensitive (ES) Devices” 


A | B 1 C 1 D i E 1 section of this service manual. 


SPECIAL NOTE All integrated circuits and many other semiconductor devices are electrostatically sensitive and 
AU I O FO | D A A therefore require the special handling techniques described under the “Electrostatically Sensitive (ES) Devices” 


section of this service manual. 


END SW ASS’Y 
’ P5106 AF-MOTOR ASS’Y P5104 
| 1 2 3 1 2 a 
auto FOCUS (A) P.C.B. AUTO FOCUS (B) P.C.B. 
R5108 
110K VR5101 200K ~— [DEAD BAND ADJ P5101 
3 D5103 
B 03 OAQ9 — 5 
OFFSET 2 byl» r R5102 
R5107 ” a @ @ 9.1 thw) 
> 
VR5102 3 C5103 1000P(50V) ® AM (PRE) SW 
BOK R5105 1K < 
WAN-¢ § 
105102 
AN78LO5 
38mm 37 omm{ 36 om 35 en 34 mem 33 ome 32) 3 1 omen 30 mmen'29 (28 ema 27 m2 G (75 (24 (23 e999 7296 
A 05102 
AMP ic5101— 2862458 CN5107 
LV021FMEJO7A 
VV V. 
y Y R5103 10K 
ADD 
5102 
(A+B) MA 
OUT 1062 
FOCUS MOTOR A 
DRIVE 
DETECTION 
CIRCUIT 
CIRCUIT C5101 
22u(10V) 
TO PROCESS SUBTRACT xt 5102 STANDBY 
CBA. SW5103 B (AB) 7 4701 
{P309) (25V) a 
To] 3 * 
CN5110 awe PULSE - PUTER SWCBA. LJ5102 3 
ei GENERATOR SW5102 
FILTER 1 
Hig 
G AF SIGNAL VCC r 
1 2 3 me 4 5 jan 6 
or 7 8 m9 pmmen( 1 0 m1 1 meen 2a] 31 4 (4 5 4 G ee 7 (7 8 pemwe1 § 
5 
o + { VR5103 | OFFSET J WB 
rte _ 50K | SW5101 ; 
oH 8 
R5109 470K 4.7 (1W) | 135103 7) 
eHo6 VR5104 WB SWCBA CBA 
200K BA. | 
$44 tao GAIN ADJ. P5105 P5103 CONTROL 
C5104 22u(10V) (9) 
$42 — 2 1 et 1 2 
Ly O | IRED ASS'Y 
| SPD ASS‘Y TO P302 
—1 , JL5101 
[cr.a PN-302C CH-B J FOCUS CUT DRIVE (IRIS) IRIS MOTOR ASS"Y 
AWB MODE IRED J © 
SELECT SW C.B.A. 


ARD O 
AUTO FOCUS(A) CIRCUIT BOARI AUTO FOCUS(B) sR VEPWodt0) AUTO FOCUS INTERCONNECTION SCHEMATIC DIAGRAM 


CN5105 
LVO21FMEJ10A 
FOCUS OUT SW C.B.A 
AN6952 P5105 VEPWO0366 
SPD Ach [ NEAR |1 pa 1] NEAR | 
ASS'Y BV = G]2 2|G 
Bch 
AF PRINT (AIC BA 
VEPWO361 
P5106 
END 1] FAR AF PRINT (B) C.B.A VEPWO362 
SW 2{ NEAR P5103 
ASS'Y 3] G 12V 12V = G|1 RED 
IR LED IR LED IRED [2 ASS'Y 
P5104 AF/MF AF/MF CN5102 
1] AF MOTOR G G LV021FMEJO2A 
2] AF MOTOR AF STANDBY AF STAND BY [ 12V DH 
G 
AF MOTOR ASS'Y P5101 iL CN5107 
A/M SW y-Ai | i2v | LV021FMEJO7A 
CN5110 AWB MODE SELECT SW C.B.A ASS'Y 2|12Vv | ; AF/MF 1 
LV021FMEJO4A VEPWO0365 | __AF STAND BY 2 
[1 | R CONTROL LJ5102 
F an a R CONTROL FILTER SW LVO021FMEJO6A 1 
AWB SW C. B. A. WB SW C.B.A. OCUS OUT SW 13 FY R CONTROL Vepwoxea = L__FILTER SW 1 2 
4 | r—q 8 CONTROL | FILTER SW 2 3 
(VEPW0365) (VEPW 0363) C.B.A. (VEPW0366) PtsH] Af sconrmor Listas 4] to Process 
CBA ces0e YS, B CONTROL W.B. SWC.B.A LV021FMEJOSA 5] C.B.A (P302) 
| 47H Wf 6V VEPW0363 [awe sw 1 6 
8 | MF 6v | AWC SW 2 7 
WT 9 | \—TR/B OK 8 
ho LP we/FULC ew IRIS MOTOR ASS'Y 3 
aT TG 10 
Lic 
Lia TFMEJOIA 


4-12 


Qa w 


Chip Components 


Precautions in replacing the chip component C. Mounting 

Make sure that the unit is turned OFF before replac- 1. Apply the solder thinly on the chip mounting foil. 

ing the chip. 2. Solder the chip temporarily while holding the chip 
Use tweezers to handle the chip to prevent any damage with the tweezers. 


to the chip surface. 
Do not re-use the chips after removal. 
Do not rub the electrode of the chips. 


Do not subject the chips to excessive stress. Tweezers 

It is recommended that a pencil-type soldering iron be Chip “a 

used. 

Solder with diameter of less than 0.5mm is recom- Solder 

mended. Soldering iron 


Do not heat the chip from more than 3 seconds. 
Maintain the temperature under 260°C (500°F) when 
soldering. 


Removal 
3. Solder both ends of the chip (three leads on the chip 


Add solder to both ends of the chip (three leads on the transistor). 


chip transistor). 

Holding the soldering iron to both ends of the chip 

(the three leads on the chip transistor) as shown below 

and remove the chip by turning it with the tweezers. Solder 


Note: Be careful not to damage the other chips. 
Chip 


™ 


Ni Soldering iron 


Tweezers 


Chip 


Soldering iron 


4-13 


Panasonic. 
MATSUSHITA ELECTRIC 


Printed in Japan 


ORDER NO. VRD-8403-513 


Service Manual 


Vol. 5 


Exploded Views 
Replacement Parts List 


SPECIFICATIONS 


Power Source: 


Power Consumption: 
(with E.V.F.) 


Newvicon Tube 
System: 


Single Carrier 
Frequency: 

Focus System: 

Lens Mounting: 

Lens: 


Lens Diameter: 
Light Sensitivity: 


Video Output Level: 
Sync. System: 

Signal to Noise Ratio: 
Horizontal Resolution: 


DC 12V + 10% 

AC 120V + 10%, 60Hz+0.5% 
(with Power Supply Unit) 

DC 6.6W at 12V DC (Battery) 
(6W with Auto Focus off) 

DC 2.0W at standby 


2/3” frequency separation single tube 
system (built in stripe filter) 


5MHz 

Electro-static type 

Built in zoom lens (not ‘‘C’”’ mount) 

8:1 zoom lens with auto/manual iris 

control 

Power zoom lens (2 speed) and macro 

construction 

F: 1.4, f: 11 mm~ 88mm 

d: 1.0m to infinity 

58mm 

Minimum light intensity on optical 
image: 7 lux (F: 1.4) 

Optimum light intensity on optical 
image: 900 lux 

1.0Vp-p, 759 (Standard NTSC signal) 

Internal Sync.: RS-170 

More than 45dB 

300 lines 


Panasonic. 


Panasonic Company 

Division of Matsushita Electric 
Corporation of America 

One Panasonic Way, Secaucus, 
New Jersey 07094 


Color Video Camera 


PK-958 


PK-958 


Color Temperature 


Control: 


Microphone: 
Audio Output Level: 
Audio Output 


Impedance: 


External Microphone 


Input Impedance: 


(Left, Right) 


Electronic Viewfinder: 


Operating 


Temperature: 


Operating Humidity: 
Operating Position: 
Weight: 


Dimensions: 


2 step switch (indoor/outdoor) & 
Auto adjust 

Stereo microphone 

—20dB, Hi-impedance 


High impedance (1 KQ) 
60002 unbalanced 
Monochrome 1 inch CRT 


5°C to 40°C 

10% to 75% 

Nomal position and Gain up position 
Camera Head with E.V.F 

5.5 Ibs (with lens, 7ft cable & shoulder 
pad/handle grip) 

AC adaptor (option) 

2.4 Ibs 

Camera Head with E.V.F. 

8.4°(W) x 7.7"(H) x 16.4”"(D) 
210mm(W) x 192 mm(H) x 409 mm(D) 
AC adaptor (option) 

3°(W) x3"(H)x6"(D) 

79mm(W) x 75mm(H) x 149mm(D) 


Weight and dimensions shown are approximate. 
Specifications are subject to change without notice. 


Panasonic Canada 


Panasonic Hawaii Inc. 
91-238 Kauhi St. Ewa Beach 
P.O. Box 774 

Honolulu, Hawaii 96808-0774 


Panasonic Sales Company, 
Division of Matsushita Electric 
of Puerto Rico, Inc. 

Ave, 65 De Infanteria, KM 9.7 
Victoria Industrial Park 
Carolina, Puerto Rico 00630 


Division of Matsushita Electric 
of Canada Limited 

5770 Ambler Drive, Mississauga, 
Ontario, L4W 2T3 


CONTENTS 


EXPLODED VIEWS (Camera Head) 
1. Camera Unit Section 2.0.0.0... ce ees 
2. Camera Unit Casing Parts Section ©... . ee ee 
3. Shoulder Grip Unit Section 2... 0.0.2.2 2 eee 
4. Electronic Viewfinder Section . 1... 0... ce ee 
5, Packing Parts Section... 0... ee eee eee 


6. Auto Focus Lens Unit Section .. 2... 0... ee eee 


MECHANICAL REPLACEMENT PARTS LIST (Camera Unit) ............. 5-7, 5-8 


ELECTRICAL REPLACEMENT PARTS LIST (Camera Unit)..........-.. 5-85-20 


AUTO FOCUS SECTION (Mechanical Replacement Parts List) 


AUTO FOCUS SECTION (Electrical Replacement Parts List). ............005 


EXPLODED VIEW @ Camera Unit Section 


c 


5-1 


@ Camera Unit Casing Parts Section 


5-2 


® Shoulder Grip Unit Section 


5-3 


® Electronic Viewfinder Section 


5-4 


@ Packing Parts Section 


5-5 


@ Auto Focus Lens Unit Section 


. . 
Mechanical Replacement Parts List Wem | Drawing No Description Pel | Are pa Ho, Remark 
Note: ‘Be sure tomake your orders of reptacement parts according to this list 63 3 SELL TERMINAL HOLDER 1 VGTWOLLO 
Oe rece ou [3 [set renaanan (+) vus¥0053 
O-+-- Only available on special order 65 3 SELL TERMINAL (-) 1 VMBW0054 
66 3 POWER ZOOM BUTION HOLDER 1 VGTWO114 
Item | prswing No. Description Pes! | Availe- Part No. Remark 67 3 JOINT LEVER 2 VoTWO115 
No, Set | bility 68 3 ESD SPRING 1 VMBWO056 
C.S8.U 69 3 POWER ZOOM BUTTON 1 VGTWO113 
1 2 SIDE COVER (R) ASS'Y 1 VYKWO555 70 3 REC/REV BUTTON 1 VGTWO112 
2 2 VCR PUSH BUTTON 1 VGTWO093 7 3 TALLY BUTTON 1 VGTWOLLL 
3 2 CAMERA/VCR SELECTION KNOB 1 veTWO094 72 3 RUBBER SWTICH (B) 2 vMGWO053 
4 2 SIDE COVER (L) ASS'Y 1 VYKWO556 73 3 RUBBER SWITCH (C) 4 VMGW0063 
5 2 BARRIER (1) 1 VMZWO146 74 3 HAND STRAP 1 VFBWOO15 
6 2 GROUND PLATE 1 VMBWO033 75 3 STRAP HOLDER 1 VKGWO356 
7 2 BACK COVER ASS'Y 1 VYKWO563 76 3 SELL CAP 1 VKHWO0S2 
8 2 SIDE DOOR ASS'Y 1 VYKWO566 77 3 BOTTOM CASE 1 VKGW0437 
9 2 HINGE PANEL ASS'Y 1 VXAW0040 78 3 BOTTOM COVER 1 VKGWO438 
10 2 HINGE ANGLE 2 VMAWO186 79 3 ESD PLATE 1 ¥SCw0108 
il 2 HINGE PIN 2 VMSW0042 80 3 MI, COM, RUBBER SWITCH i VMGWO055 
12 2 RUBBER SWITCH 1 véGWO054 81 3 AUDIO SELECTION KNOB 1 VGTWOLOS 
13 2 DOOR CLIP PIECE 2 VKBWO008 82 3 OPERATION PANEL 1 YGPWO282 
14 2 FRAME 1 VKGWO511 83 3 SHOULDER SLIDE 1 VKGW0439 
15 2 SWITCH CASE 1 84 3 SHOULDER PAD 1 VMFWO037 
16 2 SWITCH PANEL 1 VGPWO278 
17 2 TITLE SELECTION KNOB 1 VGTWO095 SIDE E.V.F. 
18 2 TIMER SELECTION KNOB 1 VGTWO096 85 4 E.V.F, TOP COVER 1 VKGWO0428 
19 2 PUSH BUTTON 1 VGTWO097 86 4 E.V.F. BOTTOM COVER 1 VKGWO429 
20 1 FILTER ASS'Y 1 VXEWO022 87 4 CRT CASE (A) 1 VKGW0430 
21 1 FILTER RING 1 vMDW0028 88 4 CRT CASE (B) 1 VKGWO431 
22 i N.V. BIAS LIGHT HOLDER 1 VMDW0042 89 4 E.V.F, DOOR ASS'Y 1 VYKW0532 
23 1 MAIN CHASSIS 1 VMKW0043 90 4 CRT PROTECTION COVER 1 VMAWO180 
24 1 SUB CHASSIS 1 VMAWO191 91 4 CASE FIXING ANGLE 1 VMAWO179 
25 1 P.C.B. FIXING PLATE 1 VMAWO189 92 4 R/L CHANGE KNOB 1 VGTWO098 
26 1 P.C.B, ANGLE 1 VMAW0190 93 4 CRT FIXING BUSH 1 VMGW0016 
27 1 DY BAND 1 VMAWO098-1 94 4 TALLY DIFFUSION PIECE 1 VGQuool9 
28 1 DY SPRING 1 véMBW0023-1 95 4 E.V.F. SPRING 1 VMBWO043 
29 2 R/B VOLUME KNOB 2 VGTWO106 96 4 GROUND SPRING 1 VMAWO204 
30 1 STANDBY SW KNOB 2 VGTWO107 97 4 E.V.F. MIRROR 1 YMRWO004 
31 1 X8 AUTO FOCUS LENS 1 VFLW0069 98 4 E.V.F. MOVEABLE ANGLE 1 VMAWO094 
99 4 E.V.F. ROTATION SPRING L VMBWO036 
34 2 HOOD CAP ASS'Y 1 VXIWOO06 100 4 LED SPACER 1 veuXWO065 
35 1 TOP HANDLE (R) 1 VKGWO435 101 4 MIRROR CUSHION 1 VMGWO066 
36 1 TOP HANDLE (L) 1 VKGWO436 102 4 CRT CUSHION (11) 1 VMGWOO31 
3? 1 STRAP HOLDER 2 VMAWO181 103 4 CRT CUSHION (111) 1 YMGWO032 
38 1 SHOE FIXING ANGLE (A) 1 VMAW0224 104 4 MIC KIT 1 VXMWO0032 
39 1 SHOE PRESSING SPRING 1 vMBWO031 105 4 SPIRAL TUBE i VKBWOO10 
40 1 SHOE 1 VMAWO156 
41 1 HANDLE ANGLE 1 VMAWO188 CASE 
42 i E.V.F. MOVEABLE CASE (R) 1 VKGW0433 106 2 FLEXIBLE PROTECTION SHEET 1 VMZWO142 
43 1 E.V.F. MOVEABLE CASE (L) 1 VKGWO0434 107 2 ESD SHEET A 2 yvMzw0145 
44 1 E.V.F. KNOB 1 VGTWO033 108 1 PRE-AMP SHIELD CASE 1 vscw0107 
45 1 SUPPORT 1 VMSWOO41 109 1 PRE-AMP SHIELD COVER 1 vscw0106-1 
46 | LOCK KNOB 1 VGTWO105 110 2 DL SHIELD PLATE 1 vscw0123 
47 1 LOCK FIXING ANGLE 1 VMAW0184 lik 1 AVR SHIELD CASE (A) 1 VSCWO1L5S 
| 48 1 LOCK PIN L veSW0039 112 1 AVR SHIELD CASE (B) 1 vscw0116 
49 1 LOCK SPRING 1 VMBWO057 113 1 AVR SHIELD BARRIER 1 yMzZW0123 
50 1 LOCK ANGLE 1 vMswo040 114 2 SYNC BARRIER 1 vMzW0127 
51 1 SUPPORT FIXING ANGLE (B) 1 VMAWO183 115 2 SYNC SHIELD CASE (A) 1 vscwO121 
53 2 ESD SHIELD PLATE 1 VSCWO155 116 2 SYNC SHIELD PLATE 1 vscw0122 
54 2 DY BARRIER ASS'Y 1 VXEWO027 117 2 SYNC INSULATION SHEET 1 VMZWO125 
[cs 2 CHASSIS BARRIER ASS'Y 1 VXEWO030 118 1 MI. COM. SHIELD CASE (A) 1 vscw0l1? 
119 i MI. COM, SHIELD CASE (B) 1 vscwO11s 
REMO. CON. SHOULDER 120 ! MI, COM, SHIELD CASE (C) 1 vscwo119 
55 3 GRIP (R) 1 VKHWO049 121 1 MI, COM. SHIELD CASE (D) 1 VSCWO120 
56 3 GRIP (L) 1 VKHWO05O MI, COM, INSULATION 
57 3 CRUTCH (A) 1 VMDWO0S4 122 ! SHEET (A) L vMzwo124 
58 3 CRUTCH STOPPER 1 VMAWO193 MI. COM. INSULATION 
59 3 CRUTCH (B) 1 VMVW0012 123 i SHEET (B) 1 VMZWO128 
60 3 CRUTCH LEVER l MAW0192 124 1 MIC JACK SHIELD CASE 1 VSCWO114 
61 3 LOCK KNOB 1 VGTWO105 125 i JACK BARRIER 1 MZW0126 
62 3 LOCK SPRING 1 VMBWO0S5 126 4 E.V.F. BARRIER 1 VMzwWO121 


5-7 


. . 
Non | Drswite No Decision sat [mye | Pathe. nmt | Flectrical Replacement Parts List 
127 2 ESD SHEET B 3 VMZWO159 Note: 
1. Be sure to make your orders of replacement parts according to this list. 
128 2 ESD SHEET C 2 MZW0160 2. IMPORTANT SAFETY NOTICE 
vy [2 | eso sannzen wzH0107 Fae aa tan er ome ost 
130 1 AVR BARRTER L VMZW0156 3. Unless otherwise specified: 
All resistors are in OHMS (0), 1/8w, 5% carbon, K=1,000 , M=1,000K2. 
All capacitors are in MICROFARADS (uF), 10%, P=ayF_ 
LABEL All coils are in MICROHENRIES (,H), m=104,, 
4. C.B.A: Circuit Board Assembly. 
131 2 DESCRIPTION LABEL 1 VOLW0654 5. C.B: Circuit Board 
132 2 CAUTION LABEL (E) u VQLW0629 SPECIAL NOTE Ail integrated circuits and many other semiconductor devices are electrostatically sensitive and 
133 1 CAUTION LABEL D 1 VQLW0633 therefore require the special handling techniques described under the “Electrostatically Sensitive (ES) Devices” 
section of this service manual. 
134 1 CHASSIS LABEL L VQLW0074 
135 1 TARGET INDICATION LABEL L VQLW0615~1% wet No. part No. Part Name & Description a 
VQLWO627-1 
136 2 AUTO FOCUS LENS LABEL 1 VQLW0650 VEFWO250 PRE-AMP C.B.A. 1 
137 3 CAUTION LABEL (B) 1 VQLW0637 
138 3 CAUTION LABEL 1 VQLW0364 VEPW0256 PROCESS C.B.A. 1 
139 4 CRT PIN INDICATION LABEL 1 VQLW0652 
140 4 HIGH VOLTAGE CAUTION LABEL 1 VQLW0631 VEPW0275 YL FILTER C.B.A. 1 
141 4 WARNING LABEL 1 VQLW0630 —_ 
142 4 CAUTION LABEL 1 vQLW0400 | VEPWO276 COLOR TITLE C.B.A. 1 
143 4 E.V.F, CAUTION LABEL 1 VQLW0639 : 
145 1 TARGET INDICATION LABEL 1 VQLWO750 _ VEPWO277 MATRIX C.B.A. _} 
VQLWO755 
VEPW0283 COLOR ERROR COMPENSATION | 1 
SCREW ___[6.Bea. 
BINDING HEAD MACHINE 
146 1 SCREWS M2.6x4 | 5 XSB26+4FU . VEPWO257 DEFLECTION C.B.A. 1 
147 3 M2.6x5 | 1 XSB26+5FXK 
148 1,3,2 M2.6x6 28 XSB26+6FU VEPWO0321 VERTICAL DEFLECTION 1 
149 1 M2x4 1 XSB2+4FU C.B.A. 
150 3 M3x6 3 XSB3+6FU _. 
15L 2 M3x6 2 XSB3+6FXK VEPW0263 MI. COM. PRINT C.B.A. 1 
BINDING HEAD TAPPING ce cee i 
152 2 SCREWS M2. 6x5 2 XTB2645GFU = VEPW0258 A.V.R. C.B.A. _ 
153 1,3 M2.6x18} 4 XTB26+18GFXK| 
154 4 M2.6x20| 2 XTB26+20GFXK| VEPWO109C TUBE SOCKET C.B.A. 1 
(182) 2 M2.6x8 1 XTB26+8GFU 
FLUSH HEAD MACHINE SCREWS VEPWO259 REAR SIDE C.B.A. 1 
155 2 M2.6x4 | 2 XSS26+4FU 
157 1 M2.6x5 2 XSS26+5FXK | VEPWO262 AUDIO C.B.A. 1 
158 2 M2.6x12} 3 XS$26+12FXK 
156 4 M2.6x4 4 XS$26+4FXK VEPWO260 _ POWER ZOOM SW C.B.A. 1 
159 1,3 M2.6x1q 4 XTS26+10GFXK 
OVAL COUNTERSUNK HEAD VEPW0264 KEY BOARD C.B.A. 1 
160 2 MACHINE SCREWS M2.6x1Q 2 XSC26+10FXK 
PAN HEAD TAPPING SCREWS VEPWO265, MI. COM. SW C.B.A. 1 
161 3 M2x6 2 XTN2+6GFU 
162 1,3 M2 6x6 5 XIN26+6GFU VEPWO278 VCR/CAMERA SW C.B.A. 1 
PRECISION MINI-SCREWS 
163 2 M2x4 2 XQS2+A4FC VEPW0280 [MIC JACK C.B.A. 1 
164 1 M2x5 2 XQS2+ASFXK 
165 1,2 M2x6.8| 9 XQ52+A6BFXK VEPW0266 E.V.F. C.B.A, 1 
PAN HEAD PRECISION MINI- 
167 1 SCREWS M2x1.5] 1 XQN2+A15FYW VEPWO261 E.V.F. LED C.B.A. i 
168 1 E RING 1 XUC4FY 
VEPWO250 PRE-AMP C.B.A. 
PACKING CASE 
169 5 PACKING CASE 1 VPKWO403 
170 5 CUSHICN TOP 1 VPGWO0101 Transistors 
17. 5 CUSHION BOTTOM 1 VPGWO102 Q201 28K321(Q) 1 
172 5 POLY BAG FOR CAMERA HEAD 1 XZB31X70A02 Q202 28A1022(B) Chip 1 
173 5 POLY BAG FOR E.V.F. 1 XZB17X45A02 Q203 2862404 (C) Chip 1 
174 5 POLY BAG FOR MIC KIT 1 XZB9. 5X40A02 9204, 205 2SA1022(B) Chip 2 
176 5 STRAP ANGLE 2 VFBWOO16 9206 28D601(R) Chip 1 
POLY BAG FOR STRAP ANGLE 
177 5 (UNIPACK) 1 85x60 (mm) 
178 5 HANDLE 1 VPQWO004 
179 5 FAN BAG KIT 1 VQFW0168 Diode 
181 2 CHASSIS BARRIER ASS'Y t VXEWOO30 D201 MALES L 
BINDING HEAD TAPPING 
182 2 SCREWS M2. 6x8 1 XTB26+8GFU 


5-8 


Pea 
Ref. No. Part No. Part Neme & Description a Remarks Ref. No. Part No. Part Name & Description het 
C312 AN2341 1 
ms 1C313 NJM2904M 1 
y | Resistors 
R201 ~ [| ernzs73565 Resistor __—-:1/4W_5.6M| 1 ee 
R202 | ERI6GCYISLIM | Chip 510} 12| 
R203 | [erozscxcz704 | 2.™) 1 LC Filters 
R204 “[ enseavosiein Chip 180| 1 10301 ELB4HOO9 1 
R205. =|: ERJGGCYJ682M | Chip 6.8K] 1 1.302 ELB4MO10 1 
R206 ERJGGCYJ222M_| Chip 2.2K; 1 1303 ELB4KO11 1 
R207 FRI6CCYJ241M | Chip 240| 1 1¢304,305 ELB4HOLO 2 
R208 ERDS2TJ273 Resistor 1/aw 27K] 1 
R209 ERDS2TJ222 i Resistor 1/4W 2,2K| 1 
R210 ERDS2TJ161 Resistor 1/4w_160| 1 
R211 “| [grseccysioam | Chip LOOK) 1 Delay Lines 
R212 ERDS2TJ152 Resistor 1/4w_ 1.5K] 1 DL301 EFDMT645C45E 
R213 [| erséccysi24m_ | chip 120K| 1 DL302 ELB4K013 
R214 |__| eRseccys682M | Chip 6.8K| 1 D303 EFDVN645B15C 
R215, ERJ6GCY5623M_| Chip 62K} 1 — | ft a 
R216 |_| ERJ6GCYS122M |Chip 1.2K| 1 ee _ 
R217 ERJ6GCYJ332M | Chip 3.3K; i a . 
R218. ——*|_—«|sERJ6GCYJ750M | Chip 75) 1 Crystals 
x301 VSxwo011 
Capacitors 
C201, 202 ECUM1E104ZFM | Chip Ceramic 25V O.L] 2 Diodes 
€203 ECEALAF470 Electrolytic 10V 47) 1 D301 MAI51K Chip 1 
€204 ECCF1HO20CC5 | Ceramic 50V 2p] 1 D302 MA27W-A i 
205 ECQE1104KN Mylar 100v. 0,1] 1 1303-306 MAi65 4 
C206 ECEAOJKS470 | Electrolytic 6.3¥ 47) 1 D307 18v73 1 
C207, 208 ECSFOSELO6 Tantalum 6.3v 10; 2 D309 MAL5IK Chip i 
209 ECUMLE104ZFM | Chip Ceramic 25V 0.1] 1 D310 MAL65 1 
210 ECSFLAE475 Tantalum 10yv. 4,7] 1 D3lL MA27A 1 
e211  ECCFIHO7ODC5 | Ceramic 50V ye) D312 MAL65 L 
C212 ECR-GBO50M11 | Trimmer sor; 1 D313,314 OA90AR 2 
213 ECCFIH220JC | Ceramic sov. 22P| 1 D315 ,316 MAL51K Chip 2 
D317+319 MAL65 3 
D320,321 MA15S1K Chip 2 
— D322 MZ303A 1 
; ” Coils 
L201; | BLT L2RO12 Percival Coil 210yH} 1 
L202. |_| EL0405SR100K 10H} 1 
Transistors 
To Q301 28D601(Q,R) _| Chip 1 
Q302,303 28B709(Q,R) _| Chip 2 
Miscellaneous Q304 25D601(Q,R) | Chip 1 
| cn201 VEKWO701 3P Connector Ass'y 1 9305 25B641 (Q,R) 1 
| cnz02 » VEKWO693 2P Connector Ass'y 1 Q306 2sp601(Q,R) | Chip 1 
p | 9307 28D636(Q,R) 1 
Q308 25B709(Q,R) | Chip 1 
Q309 2SD601(Q,R) | Chip 1 
[ Q310 28B709(Q,R) Chip 1 
r — Q3lk 25D601 (Q,R) Chip 1 
Q312 28D636(Q,R) 1 
Q313 2SD601(Q,R) | Chip 1 
VEPWO256 PROCESS C.B.A. Q314 28D603(Q,R) 1 
Q315,316 25B709(Q,R) | Chip 2 
Q3i7 2SD636 (Q,R) 1 
= Integrated Circuits Q318 2SD601 (Q,R) Chip 1 
e301 m2133 rT Q319-321 28D636 (Q,R) 3 
10302 2141 1 Q322-324 28D601(Q,R) | Chip 3 
10303 NIM2904H 1 9325 28D636(Q,R) 1 
76304 9n22108 1 Q326-333 28D601(Q,R) | Chip 8 
16305 ANZ331 1 Q334 28B709(Q,R) Chip 1 
10306 TT 6064RS i Q335-338 28D601(Q,R) | Chip 4 
16307 AN2431 L 
16308 mN8029 1 
16309 ¥N6172 1 
1¢310 | | nuM2904M 1 Resistors 
Ie311 ‘AN2340 1 R301 ERJ6GCYJ470M | Chip 


Ref. No. Part No. Part Name & Description - Ref. No. Part No. Part Name & Deecription ce 
R302 ERJ6GCYJ223M | Chip 22K} 1 R388, 389 ERJ6GCYJ103M | Chip 10K; 2 
R303 ERJ6GCYJ563M | Chip 56K| 1 R390-392 ERJ6GCYJ153M / Chip 15K; 3 
R304 ERJ6GCYJ102M | Chip 1K| 1 R393 ERI6GCYJ473M_ | Chip 47K] 1 
R305 ERJ6CCYJ472M | Chip 4.7K} 1 R394-396 ERJ6GCYJ153M | Chip 15K} 3 
R306 ERJ6GCYJ333M | Chip 33K] 1 R397 ERJ6GCYJ473M | Chip 4m| 1 
R307 ERJ6GCYJ563M | Chip 56K! 1 R398 ERJ6GCYJ103M / Chip 10K; 1 
R308 ERJ6GCYJ821M | Chip 820) 1 R399 ERJ6GCYJ100M_ | Chip lo; 
R309 ERJ6GCYJ332M | Chip 3.3K 1 R3100 ERJ6GCYJ822M | Chip 8.2K 1 
R310 ERJ6GCYJ1S2M | Chip 1.5K] 1 R3101,3102 ERJ6GCYJ103M | Chip 10K| 2 
R311 ERJ6GCYJ153M | Chip 15K 1 R3103 ERJ6GCYJ223M Chip 22K 1 
R312 ERJ6GCYJ563M | Chip 56K; 1 R3104 ERJ6GCYJ103M | Chip 10K} 1 
R313 ERJ6GCYJ391M | Chip 390| 1 3105 ERJ6GCYJ221M | Chip 220| 1 
R314 ERJ6GCYJ562M | Chip 5.6K} 1 R3106 ERJ6GCYJ822M | Chip 8.2K] 1 
R315 ERTD2FHL332S | Thermistor 3.3K; 1 R3107,3108 ERJ6GCYJ103M_ | Chip LOK; 2 
R316 ERJ6GCYJ102M | Chip IKI 1 R3109 ERJ6GCYJ822M | Chip 8.2K] 1 
R317 ERJ6GCYJ122M | Chip 1.2K} 1 R3110 ERJ6GCYJ392M | Chip 3.9K/ 1 
R318 ERJ6GCYJ222M | Chip 2.2K[ 1 R311] ERJ6GCYJ822M | Chip 8.2K] 2 
R319 ERJ6GCYJ104M_ | Chip 100K| 1 R3112 j ERJ6GCYJ182M | Chip 1.8K! 1 
R320 ERJ6GCYJ123M | Chip 12x| 1 R3113 ERJ6GCYJ822M | Chip 8.2K{_ 1 
R321 ERJ6GCYJ472M | Chip 4.7K] 2 R3114,3115; ERJ6GCYJ682M | Chip 6.8K| 2 
R322 ERJ6GCYJ102M ] Chip iK] 1 R3116 ERJ6GCYJ103M | Chip 10K) 1 
R323 ERJ6GCYJ103M | Chip 10K) 1 R3117 ERJ6GCYJ473M | Chip 47K| 1 
R324 ERJ6GCY¥J222M | Chip 2.2K] 1 R3118 ERJ6GCYJ472M | Chip 4.7K) 1 
R325 ERJ6GCYJ272M | Chip 2.7K! 1 R3119 ERJ6GCYJ103M | Chip 10K} 1 
R326 ERJ6GCYJ222M | Chip 2.2K) 1 3120 ERJ6GCYJ223M | Chip 22K 1 
R327 , ERJ6GCYJ153M | Chip 15K! 1 R3121 ERJ6GCYJ433M | Chip 43K} 1 
3328 " BRI6GCTI206M | Chip 220K| 1 R3122 ERJ6GCYJ561M | Chip s60| 1 
R329 | ERIOGCTIIGGH Chip 180K; 1 R3123 ERJ6GCYJ683M | Chip 68K; 1 
R330 ERJ6GCYJ104M | Chip 100K 1 R3124 ERJ6GCYJ333M | Chip 33K 1 
R331, 332 ERJ6GCYJ103M | Chip 10K} 2 R3125 ERJ6GCYJ153M | Chip ISK] 1 
R333 ERJ6GCYJ122M | Chip 1.2K} 1 R3126 ERJ6GCYJ182M | Chip 1.8K} 1 
R334 ERJ6GCYJ682M | Chip 6.8K| 1 R3127 ERI6GCYJ222M | Chip 2.2K) 1 
R335 ERJ6GCYJ102M | Chip Ki 1 R3128 ERJ6GCYJ561M | Chip 560; 1 
R336 ERJ6GCYJ472M {| Chip 4.7K| 1 R3129 ERJ6GCYJ272M | Chip 2.7K) 1 
R337,338 : ERJ6GCYJ103M | Chip 10K| 2 R3130,3131 ERJ6GCYJ562M | Chip 5.6K) 2 
R339, 340 ERJ6GCYJ103M | Chip 10K; 2 R3132 ERJ6GCYJ103M_ | Chip OK} 1 
R341 ERJ6GCYJ153M | Chip 15K] 1 R3133 ERJ6GCYJ560M | Chip 56| 1 
R342 ERJ6GCYJ182M | Chip 1.8K] 1 R3134 | ERJ6GCYJ102M Chip Ik] 1 
R343,344 [| |ERJ6GCYs103M | Chip ~ 10K| 2 | R3135 ERJ6GCY5222M | Chip 2.2K; 1 
R345 ERJ6GCYJ823M | Chip 82K| 1 R3136 | ERJOCCYJ27 1M | chip 270| 1 
Ri46 “ERIGECYJIO3M | Chip 10K! 1 R3137 ERJ6CCYJ222M | Chip 2.2K] 1 
R347 ERJ6GCYJ334M | Chip 330K| 1 R3138 ERJ6GCYJ122M | Chip 1.2K} 1 
R348 ~ | ERI6GCY103M Chip 10K| 2 R3139 | ERJ6GCYJ223M | Chip 22K| 1 
R349 ERJ6GCYJ102M | Chip iK L R3140 ; ERJ6GCYJ183M | Chip 18K 1 
R350 ERJ6GCYJ122M | Chip 1.2K/ 1 R3141 ERJ6GCYJ824M | Chip 820K| 1 
R351 ERJ6GCYJ331M Chip 330| 1 R3142 ERJ6GCYJ183M | Chip 18K; 1 
R352 ‘ERJ6GCYJ102M | Chip iu) 1 R3143 ERJ6GCYJ824M | Chip 820K| 1 
R353,354 ERJ6GCYJ563M | Chip 56K; 2 R3144 j ERJ6GCY3223M | Chip 22K/ 21 
R356 ERJ6GCY3J222M | Chip 2.2K 1 R3145 ERJ6GCYJ333M | Chip 33K 1 
R357 ERJ6GCYJ103M | Chip 10K} 1 R3146 ERJ6GCYJ152M | Chip 1.5K} 1 
R358 ERJ6GCYJ684M | Chip 680K 1 R3147 ERJ6GCYJ272M Chip 2.7K 1 
R359 ERJ6GCYJ561M | Chip 560] 1 R3148 ERJ6GCYJ562M | Chip 5.6K} 1 
R360 ERJ6GCYJ563M | Chip 56K 1 ‘R3149,3150 ERJ6GCYJ102M | Chip 1K 2 
R361 ERJ6GCYJ561M | Chip 560| 1 R3151 ERJ6GCYJI03M | Chip 10K{ 1 
[R362 _|ERI6GCYS100M__| Chip iol 4 R3152 ERJ6GCYJ332M_| Chip 3.3K{ 1 
R363 ERJ6GCYJ103M | Chip 10K] 1 R3153 ERJ6GCYJ103M | Chip 10K] 1 
R364 [| erséccys123M Chip 12K} 1 R3154 ERJ6GCYJ332M | Chip 3.3K] 1 
R365 ERJ6GCYJ392M | Chip 3.9K} 1 R3155 ERJ6GCYJ222M | Chip 2.2K) 1 
R366 ERJ6GCYJ153M | Chip 15K] 1 R3156 ERJ6GCYJ223M | Chip 22K] 1 
R367 |] ERJ6GCYI562M Chip 5.6K) 1 R3157 ERJ6GCYJ473M | Chip 47K} 1 
R368,369 | | ERJ6GCYS222M | Chip 2.2K] 2 R3158 ERJ6GCYJ223M | Chip 22K] 1 
R370 ERJ6GCYJ223M | Chip 22K} 1 R3159 ERJ6GCYJ473M | Chip 47K] 1 
R371 | | erseccys6s3m | Chip 68K]; 1 R3160,3161 ERJ6GCYJ103M | Chip 10K} 2 
R372 [ | BRJ6CCYI472M | Chip 4.7K) 1 R3163,3164 ERJ6GCYJ103M | Chip 10K] 2 
R373,374 ERJ6GCYJ152M | Chip 1.5K] 2 R3165,3166 ERJ6GCYJ153M | Chip 15K} 2 
R375 | | BRID2FHL503S | Thermistor 50K} 1 R3167 ERJ6GCYJ102M | Chip 1K} 1 
R376 ERJ6GCYJI53M | Chip 15K} 1 R3168, 3169 ERJ6GCYJ154M | Chip 150K] 2 
R377 | | eRg6ccys473M | Chip 47K} 1 R3170 ERJ6GCYJ223M | Chip 22K) 1 
R378,379 | | ERJOGCYJ103M | Chip 10K/ 2 R3171,3172 ERJ6GCYJ103M | Chip 10K; 2 
R380-387 | ‘| eRJ6GCYJI54M | Chip 150K) 8 R3173 ERJ6GCYJ473M | Chip 41K) 1 


5-10 


Peo 
Ret. No. Part No. Part Name & Description c Ref. No. Part No. Part Name & Description bet 
R3174-3178 ERJ6GCYJ472M | Chip 4.7K) 5 R331 EVML4GA00B33 3KB 1 
R3179 ERJ6GCYJ124M | Chip 120K 1 R332 EVML4GA00B 14 10KB 1 
R3180 ERJ6GCYJ153M | Chip 15K 1 ‘VR333 EVML4GA00B13 1KB 1 
R3181 ERJ6GCYJ562M | Chip 5.6K 1 VR334 EVML4GA00B23 2KB 1 
R3182 | | erueccys333M | Chip 33K} 1 VR335 336 EVML4GA00B14 loke| 2 
R3183 ERJ6GCYJ153M | Chip 15K) 1 VR337 EVML4GA00B23 2kB| 1 
R3184 ERJ6GCYJ222M | Chip 2.2K) 1 VR338 EVML4GA00B13 1KB 1 
R3185 ERJ6GCYJ683M | Chip 68K} 1 VR339,340 EVML4GA00B33 3KB| 2 
R3186 ERJ6GCYJ154M | Chip 150K) 1 
R3187 ERJ6GCYJ472M | Chip 4.7K 1 
R3188 ERJ6GCYJ104M | Chip 100K} 1 
R3189 ERJ6GCY.J332M | Chip 3.3K) 1 Capacitors 
R3190,3191 ERJ6GCYJ102M =» Chip 1K) 2 c301 ECSFOJE106 Tantalum 6.3V 10 1 
R3192 | ERJ6GCYJ472M | Chip 4.7K 1 C302 ECUMLH103KBN |Chip Ceramic 50vV_10000P 1 
R3193 ; ERJ6GCYJ222M | Chip 2.2K! 1 303 ECSFICDLO5 Tantalum 16V 1 1 
R3194 ERJ6CCYJ103M | Chip 10K} 1 €304 ECEAOJKS470 Electrolytic 6.3V 471 1 
R3195 ERJ6GCYJ222M | Chip 2.2K) 1 C305 ECEAOJK221X Electrolytic 6,3V_ 220) 1 
R3196 ERJ6GCYJ392M | Chip 3.9K 1 C306 ECSF1AE106 Tantalum lov 10 1 
R3197,3198 ERJ6GCYJ472M | Chip 4.7K, 2 C307 ECEALCKS100 Electrolytic 16V 10 1 
R3199 ERJ6GCYJ470M | Chip 47 1 €308 ECUMLH680JCN {Chip Ceramic SOV 68P L 
R3200,3201 ERJ6GCYJ472M | Chip 4.7K} 2 | c309 ECSF1CD104 Tantalum ley 0.1] 1 
R3202 ERJ6GCYJ102M | Chip 1K] 1 ¢c310 ECEAICKS100 Electrolytic 16V 10; 1 
R3203, 3204 ERJ6GCYJ472M | Chip 4.7K} 2 c3il ECEAOJKS101 Electrolytic 6.3¥ 100 l 
R3205 ERJ6GCYJI53M | Chip 15K} 1 C312 ECEALEKN3R3 Electrolytic 25V 3.3] 1 
R3206 ERJ6GCYJ223M | Chip 22K) 1 C313 ECUMIB472KBN |Chip Ceramic 50V 4700P/ 1 
R3207 ' ERJ6GCYJ473M | Chip 47K} 1 C314 ECSF1CD104 Tantalum 16V 0.1 1 
R3208 ERJ6GCYJ103M | Chip 10K; 1 C315 ECSF1CD105 Tantalum 16V 1 1 
R3209 ERJ6GCYJ473M =, Chip 47K, 1 C316 ECSF1CD684 Tantalum 16v. 0,68} 1 
R3210 ERJ6GCYJ103M | Chip 10K; 1 C317 ECUM1H100DN Chip Ceramic 50V OP} 1 
R3211,3212 ERJ6GCYJ334M | Chip 330K| 2 C318 ECUM1H221KN Chip Ceramic 50V_220P| 1 
R3213 ERJ6GCYJ103M | Chip 10K; 1 C319 ECUM1H222KBN |Chip Ceramic 50V 2200P; 1 
R3214 ERJ6GCYJ393M | Chip 39Ki 1 C320 ECUM1H680KN Chip Ceramic  50V 68P/ 1 
R3215 | ERJ6GCYJ222M | Chip 2.2K); 1 C321 ECEA1CKS100 Electrolytic 16V 10} 1 
R3216 i ERJ6GCYJ272M | Chip 2.7K| 1 C322 ECUM1H221KN Chip Ceramic 50V  220P| 1 
R327 ERI6GCYI222M | Chip 2.2K) 1 323 ECUMIH100DN [Chip Ceramic 50v 10P| 1 
R3218 : ERJ6GCYJ102M | Chip 1K 1 C324 ECUMIHI1O3KBN | Chip Ceramic 50V_ LOCOOP 1 
R3219 ERJ6GCYJ223M | Chip 22K 1 C325-327 ECUM1H473ZFN | Chip Ceramic 50v_47000P 3 
R3220 ERJ6GCYJ563M | Chip 56K: 1 C328 ECEA1CKN100 Electrolytic l6V 10| 1 
R3221 ERJ6GCYJ103M | Chip 10K; 1 C329 ECUM1H103KBN Chip Ceramic 50V_ 1O0000P 1 
R3222 ERJ6GCYJ272M | Chip 2.7K} 1 330 ECUM1H390KN Chip Ceramic 50v 39P 1 
R3223 ERJ6GCYJ680M | Chip 68 L 331 ECUM1H221KN Chip Ceramic 50v 220P 1 
R3276 ERJ6GCYJ562M | Chip 5.6K 1 C332 ECEAQJK221X Electrolytic 6.3V 220 1 
R3277 ERDS2TJ122 Resistor 1/4 1.2K} 1 C333 ECUMIHIO3KBN ;Chip Ceramic 50V_ 10000P 1 
R3278 ERDS2TJ473 Resistor 1/4W ATK 1 C334 ECUM1H100DCN Chip Ceramic 50V 10P 1 
R3317 ERDS2TJ223 Resistor 1/4W 22K 1) 335 ECUMIHLO3KBN |Chip Ceramic 50V_10000P 1 
R3318 ERDS2TJ103 Resistor 1/4w 10K 1 C336 ECUMLHO50DN Chip Ceramic 50V 5P 1 
R3319 ERDS2TJ103_ Resistor /ay 10K) 1 337,338 ECUMIE104ZFM Chip Ceramic 25V 0.1, 2 
R3320 ERDS2TJ223 Resistor 1/4w 22K] 1 C339 ECUMLHOSODN Chip Ceramic 50V 5P} 1 
R3321 ERDS2TJ563 Resistor 1/4¥ 56K{| 1 C340 ECSF1AE106 Tantalum lov 10 L 
R3322 ERDS2TJ223 Resistor 1/4w 22K!) 1 C341 ECUMLE104ZFM |Chip Ceramic  25V 0.1 l 
R3323 ERDS2TJ274 Resistor 1/4W 270K 1 C342 ECUMIH560JN Chip Ceramic  50V 56P 1 
R3324,3325 ERDS2TJ103 Resistor 1/4W 10K; 2 C343 ECUMLHLOLKN Chip Ceramic 50V_ 100P{ 1 
| C344 ECSF1AE476 Tantalum 10v 47 1 
C345 ECUM1H270JN Chip Ceramic 50V 27P| 1 
i C346 ECV1ZW40X53N__ | Trimmer lw 40P 1 
Variable Resistors C347 ECUM1HIO3KBN | Chip Ceramic 50V 10000P 1 
vR301 EVML4GA00B34 30KB 1 C348 ECV1ZW20X64 Trimmer lw 20P 1 
VR302 EVML4GAO0B15 100KB} 1 c349 ECSFOJELO6 Tantalum 6.3 10] 1 
vR303 EVML4GA00B13 1KB 1 350 ECUMLH103KBN Chip Ceramic 50V 10000P 1 
VR304 [| EVML4cA00B14 10KB| 1 C351 ECUMIHIO0ODCN | Chip Ceramic 50V 10P/ 1 
R305 EVML4GA00B52 500B 1 C352 ECUM1H101KN Chip Ceramic 50V 100P 1 
VR306 EVML4GA00B 14 1LOKB 1 €353 ECUM1E104ZFM | Chip Ceramic 25V 0.1 1 
vR307 | | EVHLSCA00B23 2KB/ 1 C354 ECUMIHIO3KBN | Chip Ceramic 50V 10000P| 1 
[vr308,309 | | EvML4cA00B33 3B] 2 6355 ECUMIH70KN [Chip Ceramic 50V 47P| 1 
vR310-317 | | EVML4GA00B15 100KB; 8 C356 ECEA0JKS470 Electrolytic 6,3V 47, 1 
[va3i8-325 | EVML4GA00B14 10KB| 8 C357 ECSFOJE1L06 Tantalum 6,3V 10] 1 
VR326,327 i EVML4GA00B15 100KB} 2 C358 ECEALCKS100 Electrolytic 16V 10; 1 
VR328 i EVHL4SGA00B34 30KB; 1 C359 ECUMIE104ZFM | Chip Ceramic 25V 0.1) 1 
vR329 | | BVML4cA00B15 100KB} 1 c360 ECSF1AE106 Tantalum 10V 10; 1 
VR330 EVML46GA00B24 20KBi 1 C361 ECUMLH103KBN | Chip Ceramic 50V 10000P| 1 


5-11 


Pes 
Ref. No. Part No. Part Name & Description ia Ref. No. Part No. Part Name & Description bet 
C362 ECSF1AE476 Tantalum lov 47; 1 P302 VIPWOO10 lop} 1 
C363, 364 ECUMLE1O4ZFM | Chip Ceramic 25V 0.1) 2 P303 VIPWOO20 20P; 1 
6365 ECEAICKS100 Electrolytic 16V 10] 21 P304 VIPWOO17 lip; ot 
C366 ECSFLCD474 Tantaum lev 0.47) 1 P305 VyPwOO16 lop| 1 
C367 ECEAICKS100 Electrolytic  16V 10; 2 P306 VIPWOOOS 4p] 1 
C368 ECEAOJKS470 Electrolytic  6.3V 47| 1 P307 EMC50350z 3p] 1 
C369 ECEA1BKS010 Electrolytic 50V 1] 1 P308 VIPWOOOS SP|_1 
€370 ECEALCKS100 Electrolytic 16V 10; 1 P309 VJPWOO1L lip] 1 
C371 ECUM1H271KN Chip Ceramic 50V  270P/} 1 P310 EMCS0250Z 2P| 1 
€372 ECEAOJKS470 Electrolytic  6,3V 47| 1 
6373 ECUMIHIO1KN {Chip Ceramic 50V__100P/ 1 
374 _ECSF1CD474 | Tantalum lev 0.47) 1 
C375 ECUMIHIOIKN | Chip Ceramic 50V100P| 1 Miscellaneous 
C376 ECSFOJE476 Tantalum 6.3V 47, 1 CN301 VEKWO696 2P Connector Ass'y i 
| ¢377 ECSF1CD474 Tanatalum l6v. 0.47] 1 CN302 VEKWO711 6P Connector Ass'y 1 
€378,379 ECUMIH103KBN | Chip Ceramic 50V 10000P| 2 CN303 VEKW0695-1 2P Connector Ass'y 1 
C380 _[ECUMIELO4ZFM | Chip Ceramic 25V 0,1) 1 CN304 VEKWO827 2P Connector Asa'y 1 
C381 ECEAQJK221X_ | Electrolytic 6.3V 220! 1 VEKWO828 Lug Terminal Ass'y 1 
C382 |__| ECSF1CD474 Tantalum lev 0.47| 2 VSCWO121 Syne Shield Case(A) 1 
C383 |__| ECEALHKNR47 Electrolytic 50V_ 0.47] 1 __| ¥SCWO122 Syne Shield Plate 1 
C384 ECEALVKS3R3 Electrolytic 35V 3.3} 1 VMZWO1L27 Syne Barrier 1 
C385, 386 ECEAICKS100 |Electrolytic 16V 10; 2 WMZWO125 Sync Insulation Sheet ai 
€387 ECEAIVKS3R3 | Electrolytic 35V 3.3/1 vscwo123 DL Shield Plate 1| 
C388 ECEAICKS100 | Electrolytic 16V lol 2 
0389 | | Ecumin2703cn | Chip Ceramic 50v. 27P| 1 
c390 ECEAICKS100 | Electrolytic 16V 10) 1 ' 
391 ECEAIHKNR47 | Electrolytic 50V 0.47| 1 VEPWO275 YL FILTER C.B.A. 
C392 ECEAIVKS3R3 Electrolytic 35V 3.3; 1 
€393,394 ECEAICKS100 | Electrolytic 16V 10) 2 
C395 “| BesFicb474 Tantalum lov 0.47) 1 Resistors 
C396 | | ECEAICKS100 Electrolytic  16V io] 1 R3225 ERJ6GCYJ152M | Chip 1.5K] 1 
397 ECEAIVKS3R3 | Electrolytic 35V. 3.3) 1 | R3226 ERJ6GCYJ102M | Chip 1K] 1 
c398 ECUMIH103KBN | Chip Ceramic 50V 10000P| 1 R3227 ERJ6GCYJ471M | Chip 470) 1 
C399 ECUMLH270JCN Chip Ceramic 50V 27P 1 { R3228,3229 ERJ6GCYJ102M Chip 1K 2 
3100 "| ECUMIHIOIKN | Chip Ceramic 50v. 100P) 1) | 
63101 | ECUMIE104ZFM | Chip Ceramic 25v0,1| 1 | 
€3102,3103 | ECEAIAKS2R2 | Electrolytic 50v.2.2| 2 [| 
€3104,3105 | | ECUMIH103KBN | Chip Ceramic SOV 10000P| 2 [ [Capacitors 
3106 tf ensoxsi0e [Electrolytic  16V io} 1 C311 [RCUMIH470JCN [Chip Ceramic 50V 47P| 1 
€3107,3108 ECUMIH103KBN [ Chip ‘Ceramic 50v 10000P| 2 C3112 ECUMLH220JCN | chip Ceramic 50V 22P/ 1 
¢3109 ECEALHKS010 Electrolytic 50V 1 1 €3113 ECUMIH101JIN i Chip Ceramic 50V  100P 1 
3110 | ECEAOJSS471 Electrolytic 6.3V 470| 1 C3114 ECUMIH270JCN | Chip Ceramic 50V 27P| 1 
€3128 ECSFIAE106 Tantalum 109 10 L C3115 ECUMIHIS1JCN ‘Chip Ceramic 50V 150P 1 
e359 [zosrosei06 Tantalum 6.3v 10/1 C3116 ECUMIH271JCN | Chip Ceramic 50V  270P/ 1 
3160 ‘| [eccrimio13 ceramic sov 100P| 1 
| C3161 _[ | ECKP1H271KB | Ceramic Sov. 270P/ i 
C3164 1 [peseanios Tantalum lov 1o| 1 
Coils 
Po 1319 EL0405SK220K 22uH| 1 
1320 ELO4058K271K 270uH| 1 
Colis 1321 ELO405SK121K 120vH{ 1 
L301 | | eLosossxloix 100pH| 1 L322 EL0405SK221K | 220uH | 1 
[1302 |_| EL0405sK1S0K 15¥H| 1 | 
1303,304 | | sLosossKersK 6.84] 2 | 
[1305 |__| ELogossk102K mu | 1 
1306 ELO405SK100K 10HH} 1 VEPWO276 COLOR TITLE C.B.A. 
1307 EL0405SK680K 68uH| 1 
1308 | | eL0405sK101K 100uH] 1 
/.309,310 | | ELOsOSSKISIK 150HH| 2 Transistors 
L311 | | EL04058K330K 33yH| 1 Q340-342 28D636(Q,R) 3 
L312 ELO4O5SK101K 100HH{ 1 343,344 2802206 2 
L313 | | BL0405sK100K 10uH| 1 345-347 2862295C Chip 3 
11314-316 | | ELoaossKlolK 1ooun| 3 Q348 28D601(Q,R) | Chip 1 
L317 | | £L0405sK102K imal 1 
[318 |__| ELo405sK2z0x 22m; 1 
aaa Diodes 
YO D325,326 MAL65 2 
fC Short Plugs 
1 P301 | | varwooo2 i P| 


5-12 


Pee 
wl No. Part No, Pert Name & a Ref. No. Part No. Part Name & Description ba 
Reslatove VEPWO283 COLOR ERROR COMPENSATION 
R3238 ERJ6GCYJ472M | Chip 4.7K] 1 CBLAY 
R3239 ERJ6GCY5223M | Chip 22K} 1 
R3240 ERJ6GCYJ102M | Chip 1K] 1 
R3241 ERJ6GCYJ562M | Chip 5.6K] 1 Transistor 
R3242 ERJ6GCYJ152M | Chip 1.5K] 1 0339 288709 (QR) Chip 1 
R3243 ERJ6GCYJ563M_ | Chip 56K] 1 
R3244 ERJ6GCYJ223M_ | Chip 22K{ 1 
R3245 ERJ6OGCYS152M | Chip 1.5K] 1 
R3246 ERJ6GCYS472M_ | Chip 4.7K| 1 Diodes 
R3247 ERJ6GCYI562M | Chip 5.6K| 1 0323, 324 OASOAR 2 
R3248 ERJ6GCYJ152M | Chip 1.5K] 1 
R3249 ERJ6GCYJ563M_| Chip 56K, 1 
R3250 ERJ6GCYS223M_ | Chip 22K] 1 
R3251 ERJ6GCY103M_| Chip 10K} 1 Resistors 
73282 mseccys47™ | chip ml R3230,3231 ERJ6GCYJLO5M | Chip IM} 2 
R3253 ERJ6GCY223M_ | Chip 22K| 41 R3232 ERI6GCYI273M_| Chip 27K} 1 
ya254 maeocys22™ | chip axl a R3233 ERJ6GCY¥J222M | Chip 2.2K| 1 
53255 [arssccvsi03m | chip tox 1 R3234 ERJ6GCYJ104M_ | Chip 100K| 1 
R3256 [ ERyeccys102M | Chip iK[ 1 B3235 ERJ6GCYILO4M | Chip 100K] 1 
R3257 ERI6GCYJ472M | Chip 4.7K] 1 R3236 ERIOGCYJ822M_| Chip 8.2K) 1 
R3258 ERJ6GCYJ562M | Chip 5.6K] 1 R3237 ERJ6GCYSIO4M | Chip LOOK] 1 
R3259, 3260 ERJ6GCYJ223M | Chip 22K) 2 
R3261 ERJ6GCYJ472M | Chip 4.7m] 1 
R3262 ERJ6GCYJ562M | Chip 5.6K) 1 
R3263 ERJ6GCYJ103M | Chip 10K; 1 ; Capacitors 
C3117,3118 | | ECEALHKSR47 [Electrolytic 50V__0.47| 2 
Capacitors 
3119 ECUMLHIO1JN | Chip Ceramic 50V  100P| 1 
€3120 ECUMIH220JN | Chip Ceramic SOV 22P| 1 
C3121 ECUMIHIO2KBN [Chip Ceramic 50V 1000P| 1 
©3122 ECUMIHIO3KBN | Chip Ceramic 50V 10000P{ 1 
3123 ECUMIHS60JN [Chip Ceramic 50¥  S6P| 1 |. 
3124 ECUMIH103KEN | Chip Ceramic 50V 10000P| 1 VEPWO257 DEFLECTION C.B.A, 
3125 ECUM1H102KBN | Chip Ceramic 50V_ 1000P| 1 
3126 ECUMIH103KBN | Chip Ceramic 50V 10000F} 1 
3127 ECUMIR473ZEN | Chip Ceramic 50V 47000P| 1 Integrated Circuits 
1c601 NJM3415M 1 
1602 PD7508G--607 1 
1¢603 AN2510S 1 
VEPWO277 MATRIX C.B.A. 1C604,605 AN90B828 2 
1C606 AN9OB82S 4 
1¢607 HM6116LFP-4 1 
Transistors 
Q349-352 258709(Q,R) | Chip 4 
Diodes 
D601 MAL714 1 
Resistors D602 MALS1K Chip 1 
R3264 ERJ6GCYJ682M | Chip 6.8K| 1 D603 ERB28-04D 1 
R3265 [| maseceys3eim | chip 390| 1 D604 MA151K Chip 1 
R3266 ERJ6GCYJ682M | Chip 6.8K) 1 D605-607 MAISIK =| Chip 3 
R3267 ERJ6GCYJ222M | Chip 2.2K] 1 D608 18954 L 
R3268 ERJ6GCYJ393M_ | Chip 39K| 1 D609 MAIS1K Chip 1 
R3269 ERJ6GCYJ332M | Chip 3.3K] 1 D610 MA165 l 
R3270 ERJ6GCYJ103M | Chip 10K} 1 D611 OASOAR 1 
[R3271 | | erséccysio2m | chip 1K| 1 
R3272 ERJ6GCYJ183M | Chip 18K} 1 
R3273 [| exseccys472M Chip 4.7Kj 1 
R3274 ~ | ERI6GCYJ6B1M | Chip 680{ 1 Transistors 
3275 | | ERI6GCYI331M | Chip 330] 1 601 28B788(R) 1 
Q602 603 2SD601(Q,R) _| Chip 2 
~ 9604 28B709(Q,R) _| Chip 1 
— Q605 28C1565A 1 
~T4 Q606 ,607 2SA1018(Q,R) 2 
_ Q608 28D973A 1 
_ Q609 28B709(Q,R) Chip 1 
rs Q610,611 28B709(Q,R) Chip 2 


5-13 


Pes 
Ref. No. Part No. Part Name & Description a Ref. No. Part No. Part Name & Description bet 
Q612 2SD601(Q,R) Chip 1 R665 ERJ6GCYJ223M | Chip 22K} 1 
Q613 28D669A 1 R666 ERJ6GCYJ562M | Chip 5.6K 1 
Q614 2SD601(Q,R) | Chip 1 R667 ERJ6GCYJL53M | Chip 15K] 1 
Q615 28D662(Q,R) 1 R668 ERJ6GCYJ152M | Chip 1.5K 1 
Q616 2SD601(Q,R) Chip L R669 ERJ6GCYJ563M | Chip 56K; 1 
Q617 2SA1018(Q,R) 1 R670 ERJ6GCYJ153M | Chip 15K 1 
Q622 28A1018(Q,R) 1 R671 ERJ6GCYJ563M | Chip 56K) 1 
Q623 28D662(Q,R) 1 R672 ERJ6GCYJ470M | Chip 47) 1 
Q624 2SB709(Q,R) Chip 1 R673 ERJ6GCYJ102M | Chip 1K 1 
Q625 28D601(Q,R) Chip 1 R674 ERJ6GCYJ622M | Chip 6.2K} 1 
9626 28B709(Q,R) Chip 1 R675 ERJ6GCYJ623M | Chip 62K; 1 
Q627-629 2sD601(Q,R) Chip 3 R676 ERJ6GCYJ222M | Chip 2.2K; 1 
630,631 25B709(Q,R) | Chip 2 R677 ERJ6GCYJ561M | Chip 560; 1 
Q632 2SD601(Q,R) Chip 1 R678 ERJ6GCYJ223M | Chip 22K] 1 
R680 ERJ6GCYJ103M_ | Chip 10K] 1 
R681 ERJ6GCYJ4R7M | Chip 4.7] 1 
R682 ERJ6GCYJ512M | Chip 5.1K] 1 
Resistors R683-687 ERJ6GCYJ563M | Chip 56K, 5 
ROOL ERJ6GCYJ103M | Chip 10K 1 R688 ERJ6GCYJ564M | Chip 7 560K 1 
R602 EROS2CKF5603 | Chip 1/4w  560K| 1 R689 ERJ6GCYJ563M | Chip 56K] 1 
R603 ERJ6GCYJ823M | Chip B2K} 1 R690 ERJ6GCYJ123M | Chip 12K; 1 
R604 ERJ6GCYJ624M | Chip 620K; 1 R691,692 ERJ6GCYJ224M | Chip 220K; 2 
R605 ERJ6GCYJ393M | Chip 39x! 1 R693 ERJ6GCYJ104M | Chip 100K| 1 
R606 ERJ6GCYJ472M | Chip 4.7K] 1 R694 ERJ6GCYJ683M | Chip 68K} 1 
R607, 608 ERJ6GCYI331M | Chip 330| 2 R695 ERJ6GCYJ563M_| Chip 56K{ 1 
R609 ERJ6GCYJ683M | Chip 68K| 1 R696 ERJ6GCYJ223M | Chip 22K] 1 
R610 ERJ6GCYJ104M | Chip 100K! 1 R697 ERJ6GCYJ104M | Chip 100K| 1 
R611 ERJ6GCYJ153M Chip 15K| 1 R698 ERJ6GCYJ472M {| Chip 4.7K} 1 
R612,613 ERJ6GCYJ472M | Chip 4.7K] 2 R699 ERJ6GCYJ103M | Chip 10K; 1 
R614 ERJ8GCYJ334W | Chip 330K] 1 R6100 ERJ6GCYJ682M | Chip 6,8K/ 1 
R615 ERJ8GCYJ223W | Chip 22K] 1 R6101 ERJ6GCYJ563M_ | Chip 56K| 1 
R616 ERI8GCYJ123W | Chip 12K} 1 R6102 ERJ6GCY¥J220M | Chip 22) 1 
R617 ERJ8GCYJ562W | Chip 5.6K} 1 R6103 ERJ6GCYJ562M | Chip 5.6K| 1 
R618 ERJ8GCYJ102W | Chip Ki] 1 R6104 ERJ6GCYOROO | Chip o| 1 
R620 ERJ6GCYJ332M | Chip 3.3K} 1 R6105 ERJ6GCYJ472M | Chip 4.7K] 1 
R621 ERJ8GCYJ224W | Chip 220K) 1 R6106 ERJ6GCYJ102M | Chip 1K) 1 
R622 ERJ6GCYJ101M | Chip 1oo] 1 R6107-6112 ERJ6GCYJ563M | Chip 56K| 6 
R623 ERJ6GCYJ472M | Chip 4.7K] 1 R6118,6119 ERJ6GCYJ563M | Chip 56K) 2 
R624 ERJ6GCYJ104M | Chip 100K] 1 R6120 ERDS2TJ563 Resistor 1/40 56K] 1 
R625 ERJ6GCYI333M | Chip 33x11 R6122 ERDS2TJ562 Resistor 1/4W 5.6K) 1 
R626 ,627 ERJ6GCYJ563M | Chip 56K| 2 R6123 ERDS2TOT 0} 1 
R628 ERJ6GCYJ223M | Chip 22K; 1 
R629 ERJ6GCYJ152M | Chip 1.5K} 1 
R630 ERJ6GCYJ102M | Chip 1K} 1 
R631 ERJ6GCYJ222M | Chip 2.2K| 1 Variable Resistors 
R632 ERJ6GCYI682M | Chip 6.8K) 1 vR601 EVML4GA00B34 30KB/ 1 
R633, 634 ERJ6GCYJ103M | Chip 10K} 2 VR602 EVHL4GA00B35 300KB| 1 
R635 ERI6GCYJ273M | Chip 27K) 1 vR603 EVML4GA00B34 30KB| 1 
R636 ERJ6GCYJ103M | Chip 10K} 1 VR604 EVML4GAQ0B16 IMB; 1 
R637 | Teryeccys332m | chip 3.3K] 1 VR605 EVML4GA00B55 500KB| 1 
R638 ERJ6GCYI472M | Chip 4.7K} 1 VR606 EVML4GA00B34 30KB| 1 
R639 ERJ6GCYJ153M | Chip 15K} 1 VR607-614 EVML4GAQ0B14 10xB|_ 8 
R640 ERJ6CCYJ562M | Chip 5.6K} 1 VR615 EVML4GA00B12 100B| 1 
R641 ERJO6GCYJ221M_ | Chip 220) 1 R616 EVML4GA00B14 los! 1 
R642_——*| | ERJ@GCYI102M | Chip ° Ko VR617 EVML4GA00B23 2KB} 1 
R643 ERJ6GCYJ151M | Chip 150| 1 vR618 EVML4GA00B33 3KB|_ 1 
R644 ERJ6GCYJ180M | Chip 18] 1 R619 EVML4GA00B15 100KB| 1 
R645 ERJ6GCYJ274M_ | Chip 270K} 1 VR620 EVML4GA00B13 1KB| 1 
R646 ERJ6GCYI332M | Chip 3.3K| 1 VR621 EVML4GA00B15 1OOKB| 1 
R647 | | ers6ccys152m Chip 1.5K} 1 
R648 | | srseccys221m | Chip 220[ 1 
R649 |_| srseecysi6im Chip 180} 1 
R650 |_| erséccys221M Chip 220} 1 Capacitors 
R651,652 _ ERJ6GCYJ103M Chip 10K 2 cé601 ECEA1AKS470 Electrolytic 10V 47 1 
R653 ERJ6GCYJ472M | Chip 4.7K) 1 c602 ECEAICKS100 Electrolytic  16V 10 1 
R657 | Tgrséecysioam | chip 100K! 1 c603 ECEAIAKS330__ | Electrolytic _10V 33} 1 
R658 FRIGGCYJ472M | Chip 4.7K| 2 C604 ECQVLH1543Z Mylar 50v_ 0.15} 2 
R660 || praeecys223m | chip 22K! 1 605 ECSFIAE476 | Tantalum tov 47| 4 
R663 | | erseccvs333m_| chip 39x} 1 c606 ECEAICKS100 [Electrolytic 16v _10/ 1 
R664 ERJ6GCYJ184M_ | Chip 180K 1 C607 ECEA2AS010 Electrolytic 100V. i i 


5-14 


Pa 
Ref. No. Part No. Part Name & Description a Ref. No. Part No. Part Name & Description | iy 
C608 ECSFIAE476 | Tantalum lov a7] 1 Crystal 
C609 ECEAIASS221 | Electrolytic 10v  220/ 1 x601 VSX0094 32kHz| 2} 
610 ECUMIELO4ZFN | Chip Ceramic 25V 0.1/1 
Cc6LL ECUM1LH103KBN Chip Ceramic 50V 10000P 1 
612 ECEAIAKS470 | Electrolytic 10V. 47] 1 
613 ECQM2182JZ Mylar 200v0.0018| 1 Switches 
C614 ECQE10472MV | Mylar 1Kv 0.0047; 1 Sw601 ¥sswo030 S/R/O SW L 
C615 BCQM4472MZ_‘| Mylar 400v0.0047| 1 Sw602 ¥SSw0031 Ext. Title SW t 
C616 ECEA2WSO10 ‘| Electrolytic  450V ila 5w603 EvQQs 107K Timer Set (Lap) SW 1 
aa : =p W604 EVQQS107K Timer Set (Start) SW 1 
C619 ECQE1104KN Mylar 100v. 0.1) 1 sW605 EVQQS 205K Title (Set) SW 1 
620 ECUMLH101KM | Chip Ceramic 50V  100P/ 1 SW606 EVQQS205K Title (Sel) sw L 
6622 ECUMIE104ZFN |Chip Ceramic 25V 0.1) 1 Sw607 EVQQS205K Title (Adj) sw L 
er HoEALGKS100 | Electrolytic lev 10h 1 W608 EVQQS205K Title (Title Reverse) SW | 1 
624,625 ECSF1CD474 | Tantalum tev 0.47| 2 SW609 EVQQSNOAT REMO. CON. (P/P) SW 1 
C626 ECEAICKS100 | Electrolytic 16V to] 1 SW610 EVQQSNO4T REMO. CON. (Slow) SW 1 
627 ECQES473KZ | Mylar 400v 0.047! 1 SW61L EVQQSNOST REMO. CON. (Rev) sw 1 
628 "| gepaicksi00 |Electrotytic 16. 10/1 Sw612 EVQQSNOAT REMO. CON. (Cue) SW L 
629 ECUMIH391KN Chip Ceramic 50v 390P| 1 SW613 EVQQSNO4T REHO. CON. (Insert) SW L 
630 ECUMIH121KN | Chip Ceramic 50V 120P| 1 
col ECSF1AE476 _| Tantalum lov 47] 1 
632 ECEALAKS470 | Electrolytic 10V 47/1 
e633. ——«| =| ECEAOJKS101 {Electrolytic 6.3v 100/14 _Short Plugs 
C634 ECSFIAE476 | Tantalum lov 47[ 1 P601 VIPWOOOS : 3P{ 
c635 ECEAIAK101 [Electrolytic 10V 100] 1 P602 EMCS0650Z 6r| 1 
636 ECQP13313z __| Mylar 1o0v 0.00033] 1 P603 _-vJpwo00? zpit 
637 ECUMIH391KN | Chip Ceramic 50V__390P| 1 P604 _VsPwoodzL 2Pj_ 4 
0638 ECUM1H102KBN |Chip Ceramic 50v 1000P| 1 P605 BMCS08502 SP] i 
639 ECQVIH104J2Z | Mylar sov. 0.1/1 P606 VIPWOODS SP 1 
©640 ECEAIAKS470 Electrolytic 10V 47, 1 F607 VSPWOO02 2P4_t 
C641 ECQM215252 | Mylar 200v0.0015| 1 P608 VIPWOOLE 10P| _! 
}coa2 ECEAICKS100_ | Electrolytic 16V_10| 1 P609 VIPWOOLS 16P} 1 
C646 ECUMIH221KN [Chip Ceramic 50v__220P/ 1 P610 VJPWOO21 23P;_1 
647 ECQP1152J2 | Mylar 1oovo.oo15| 1 Poll VIPWOO18 — 12p)_1 
648 ECEAICKS100 | Electrolytic 16v__10/_1 P64 CIPWOOL7 NP} 
C649 ECEALHKNR47 | Electrolytic 50V 0.47, 1 P615 VIPWOO20 20P| 1 
C650 ECUMIH9LIKN | Chip Ceramic 50V  910P| 1 P612 VIPWO002 2P| 2 
C651 ECUMIE104ZFN | Chip Ceramic 25V 0.1! 1 P613 VIPWO003 3P; 
C652 ECQBIH223KH | Mylar sov 0,022) 1 _ 
c653 ECEALHKNR47 Electrolytic 50V¥ 0.47 1 
C654 ECUMIH221KCN | Chip Ceramic 50V  220P| 1 
€655,656 ECEAOJKS470 | Electrolytic 6.3V. 47| 2 Miscellaneous 
C657 ECQV1H6B452 Mylar 30v. 0.68] 1 CNOO3 VEKWO714 A Connector Ass'y 1 
C658 ECEAQJK221 | Electrolytic 6.3V. 220| 1 CN6O1 VEKWO776 2P Connector Ass'y 1 
659-661 ECUMIH330KCN | Chip Ceramic 50V  33P; 3 CN602 VEKWO826 2P Connector Ass'y 1 
C662 |] ECEAOJKS101 | Electrolytic 6.3¥  100| 1 VEKWO828 Lug Terminal Ass'y 1 
C663 | | EcEAosKs470 [Electrolytic 6.3V. 47| 1 VEKWO629 Lug Terminal Ass'y 1 
}c664 | | ECUMIHIO2KBN | Chip Ceramic 50V 1000P| 1 
C665 | | Eceaouxs220 | Electrolytic 6.3V 22, 1 
666 + | BceatuKs010 | Electrolytic  50V na I 
667 ECUMIHIO3KBN | Chip Ceramic 50V 10000P| 1 VEPWO321 VERTICAL DEFLECTION 
| Pgesrose106 | Tantalum 6.3v10/ 1 C.B.A. 
~T BCKFIH101KB Ceramic 50V 100P 1 
"| ecsrosei06 | Tantalum 6.3¥ 10; 1 
ECSF1AE476 | Tantalum lov 47|_ Integrated Circuit 
—- 1¢608 ‘AN6050 1 
pT Coils 
L601 VLQ7HLO1K 100pH{ 1 _ Resistors 
602 {| eLc09Ko01 Lome! R6113 ERJ6GCYJ683M | Chip 68K; 1 
603 I pra7qH00ze sOmn) R6114 ERJ6GCYJ154M | Chip 150K] 1 
Leos 1 vuerao1e Seoul! a R6115 ERJ6GCYJ222M | Chip 2.2K) 1 
605 e1040ssK101x Tool R6116 ERJ6GCYJ390M_ | Chip 39/1 
— R6117 ERJ6GCYJ102M | Chip uk} 1 
Capacitors 
C668 ECUMIH271KCN | Chip Ceramic 50V270P| 1 


5-15 


Pea 
Ref. No. Past No. Part Name & Description C Ref. No. Part No. Past Name & Description bet 
C669 ECUMIH222KBN | Chip Ceramic 50V 2200P} 1 R729 ERJ6GCYJ124M | Chip 120K] 1 
c670 ECSF1CD225 Tantalum l6v 2.2] 1 R730,731 ERJ6GCYJ563M_ | Chip 56K| 2 
c671 ECUMIH272KBN | Chip Ceramic 50¥ 2700P| 1 R733-735 ERJOGCYJ563M | Chip 56K| 3 
€672 ECUM1H102KBN | Chip Ceramic 50V 1000P| 1 R736 ERJ6GCYJ103M_ | Chip 1OK{ 1 
C673 ECUM1H472KBN | Chip Ceramic 50V 4700P| 1 R737 ERJ6GCYJ223M_ | Chip 22K| 1 
C674 ECSFLCD474 Tantalus lov 0.47] 1 R738 ERJ6GCYJ103M_ | Chip 10K] 1 
C675 ECEA1CKS100 | Electrolytic 16V 10] 1 R739 ERJ6GCYJ223M | Chip 22K 4 
C676 ECUM1H472KBN | Chip Ceramic 50V 4700P| 1 R740-742 ERJ6GCYJ103M_ | Chip 10K| 3 
R743 ERJ6GC¥J563M_ | Chip 56K{ 1 
R744 ERJ6GCYJ223M | Chip 22K| 1 
R745 ERJ6GCYJ222M | Chip 2.2K] 1 
R746 ERJ6GCYJ224M | Chip 220K} 1 
R747, 748 ERJ6GCYJ104M_ | Chip 100K[ 2 
R749 ERJ6GCYJ273M_| Chip 27K] 1 
R750, 751 ERJ6GCYJ152M_| Chip 1.5K] 2 
VEPWO263 MI. COM, PRINT C.B.A. R753,754 ERJ6GCYJ223M_ | Chip 22K) 2 
R755 ERJ6GCYJ104M | Chip 100K} 1 
R756 ERJ6GCYJ223M | Chip 22K| 1 
Integrated Circuits R757 ERJ6GCYJ103M | Chip 10K} 1 
Ic701 AN69145 1 R758 ERX1SJ4R7 lw 4.7) 1 
1C702 UPD75086-606 1 R759 ERDS2TJ103 Resistor 1/4W 10K} 1 
1¢703 MN1L237E 1 
10704 HPD4066BG 1 
1¢705 AN90B82S 1 
Capacitors 
c701 ECUMLE104ZFN |Chip Ceramic 25V 0.1 1 
C702 ECEAOJKN330 Electrolytic 6.3V 33 1 
Transistors c703 ECR-GBO50M11 | Trimmer 50P} 1 
Q701~-706 28D601(Q,R) Chip 6 C704 ECUM1H330JN Chip Ceramic 50V 33P; 1 
Q707 28B709(Q,R) Chip 1 €705 ECUMIH330JCN |Chip Ceramic 50V  33P/ 1 
Q708-717 2SD601(Q,R) | Chip 10 C706, 707 ECUMIH103KBN |Chip Ceramic 50V 10000P| 2 
c708 ECEAOJKS101 | Electrolytic 6.3V100/ 1 
c709 ECEAQJK221X | Electrolytic 6.3V 220/ 1 
c710 ECCF1H270KW | Ceramic sov.27P{ 1 
Diodes e711 ECEAIESS471U | Electrolytic 25V  470/ 1 
D701-705 MAISIK Chip 5 c7i2 ECEA1AK1O1 Electrolytic LOV 100 1 
D706 MAL65 1 e713 ECUMIHIO1JN |Chip Ceramic 50V__100P/ 1 
D707 MAL120 1 
D708 MAL65 1 
D709 MAISIK Chip 1 
D710 MAI65 1 Variable Resistors 
D711 MA1120 1 VR701 VRVWO002 100KB| 1 
D712~715 MAISLK Chip 4 VR702 VRYWO003 3.3KB/ 1 
D716 $5500B i 
Coils 
Resistors L701 EL0405SK101K 100uH| 1 
R701 | ERJ6GCYI153M Chip 15K/ 1 L702 VLQ7BA70K-40 SOuH| 1 
R702 ERJ6GCYJ562M_ | Chip 5.6K; 1 
R703 ERJ6GCYJ243M | Chip 24K; 1 Crystal 
R704 ERJ6GCYJ273M | Chip 27K) 1 x701 Vsx0094 32kHz! 21 
R705 ERJ6GCYJ124M | Chip 220K{ 1 
R706 ERJ6GCYJ104M | Chip 100K| 1 
R707 ERJ6GCYJ333M | Chip 33K] 1 
R708 ERJ6GCYJ153M | Chip 15K| 1 Fuse 
R709 ERJ6GCYJ220M | Chip 22) 1 
R710,711 ERJ6GCYJ472M | Chip 4.7K) 2 
R712-715 ERJ6GCYJ563M | Chip 56K} 4 
R716 ERJ6GCYJ103M | Chip 10K) 1 
|R717-719 | | ERs6ccys220m | chip 22] 3 Switch 
R720 ERJ6GCYJ223M | Chip 22K; 1 sw701 vssw0029 VHS Compati SW 1 
R721 ERJ6GCYJ101M | Chip 100] 1 
R722 ERJ6GCYJ562M | Chip 5.6K] i 
R723 ERJ6GCYJ222M | Chip 2.2K] 1 
R724 ERJ6GCYJ472M | Chip 4.7K] 1 Short Plugs 
R725 ERJG6GCYJ562M | Chip 5.6K/ 1 P701 EMCS05502 spi ot 
R726 ERJ6GCYJ563M_ | Chip 56K] 1 P704 VIPWOOO2 2P; 1 
R727 ERJ6GCYJ562M | Chip 5.6K| 1 P705 VIPWO004 4p] 
R728 ERJ6GCYJ472M | Chip 4.7K; 1 


5-16 


Pes 
Ref. No Part No. Part Name & Description a Ret. No. Part No. Pert Name & Description cet 
Miscellaneous R6027 ERJ6GCYJ472M | Chip 4.7K| 1 
CN701 VEKWO702 2P Connector Ass'y L R6028 ERJ6GCYJI53M_ | Chip 15K] 1 
€N702 VEKW0697 2P Connector Ass'y 1 R6029 ERJ6GCYJ154M | Chip 150K| 1 
cNn703 VEKWO7 12 6P Connector Ass'y 1 R6030 ERJ6GCYJ182M | Chip 1.8K} 1 
cN704 VEKWO704 3P Connector Ass'y 1 R6031 ERJ6GCYJ103M | Chip 10K] 1 
CNOLO VJBWO334 F.P.C.(B) 1 R6032 ERJ6GCYJ222M | Chip 2.2K| 1 
CNOoo9 VJBWO335 F.P.C.(C) 1 R6033 ERTD2FHL802S | Thermistor 8K, 1 
cNoo8 VJBWO336 F.P.C,(D) 1 R6034 ERJ6GCYJ563M_ | Chip 56K] 1 
vscwO117 MI.COM. Shield Case (A) 1 
VSCWO118 MI.COM. Shield Case (B) 1 
vuZWO128 MI.COM. Insulation 1 
Sheet (A) Variable Resistors 
vR6001 EVML4GA00B13 1KB} 1 
VEPWO258 AUTOMATIC VOLTAGE VR6002 VRVWO005 2.2KB) 1 
REGULATOR C.B.A. 
Integrated Circuits [ Capacitors 
1C6001 AN6564NS L C6001 ECEAIESS101 |#lectrolytic 25V¥ 100] 1 
1¢6002 AN6558S L 6002 ECEAQJSS471 |Electrolytic 6.3V 470) 1 
1¢6003 MB88303 Il c6003 ECEA1AK101 Electrolytic 10V  100/ 1 
C6004 ECEA1CKS100 Electrolytic 16¥V 10 1 
C6005 ECEAQJKS101 |Electrolytic 6.3V 100) 1 
: C6006 ECEAQJK221 Electrolytic 6.3V 220! 1 
+ Diodes C6007 ECEAIESS101 | Electrolytic 25v 1001 1 
D6001 MAL65 L C6008 ECEAIAKS470 [Electrolytic 10V 47) 1 
D6002 MZL306B 1 c6009 ECUM1H222KBN Chip Ceramic 50V. 2200P 1 
D6003 18954 i c6010 ECEAICKS100 | Electrolytic 16V 10/ 1 
D6004-6006 MA165 3 C6011 ECUM1H561KN Chip Ceramic 50V¥ 560P 1 
D6007 MA27W 1 c6012 ECEAOJK221 Electrolytic 6.3V 220 1 
D6008,6009 MAL6S 2 c6013 ECCF1H1015 Ceramic 50v. 100P| 1 
C6014 ECEAQJK221X {Electrolytic 6.3V 220/ 1 
C6015 ECEAOJKS220 [Electrolytic 6.3V 22/ 1 
C6016 ECEA1ASS221 Electrolytic 10V 220 1 
Transistors 
Q6001 28B709(Q,R) _| Chip 1 
Q6002 2SA963A(Q,R) 1 
Q6003 28D601 (Q,R) Chip 1 Coils 
96004 6005 2SD874A Chip 2 16001 ELCO8G003 SOHH| 1 
q6006,6007 | | 25p636(Q,R) 2 16002 ELCO95001 670uH| 1 
Q6008 2sD601(Q,R) _| Chip 1 16003 ELCO8G003 50uH| 1 
16004 VLQ7HLOIK 100uH| 1 
Resistors 
R6001 | [aRs6GCYI472M | Chip 4.m| 1 Short Plugs 
R6002 | | pRaeccys562m | Chip 5.6K{ 1 P6001 vaPwO002 2P|{ 1 
R6003 |_| erseocys222m Chip 2,2K| 1 P6002 |= | VPWO003 3P} 1 
R6004 ERJ6GCY3562M | Chip 5.6K| 1 P6003 VIPWOO06 oP; 1 
R6005 ERJ6GCYJ472M | Chip 4.7K} 1 P6004 VIPWO0O2 ap] i 
R6006 ERJ6GCYJ103M | Chip 10K} 1 P6005 VIPWOO06 6P| 1 
R6007 ERJ6GCYJ152M | Chip 1.5K} 1 
R6008 | |eRg6ccysi23M | Chip 12K] 1 
R6009 ERJ6GCYJ103M | Chip 10K} 1 
R6010 ERJ6GCYJ223M | Chip 22K; 1 Miscellaneous 
R6011 { ERJ6GCYJ102M | Chip Ky 1 CN6001 VIBWO339 F.P.C. (G) 1 
R6012 | TERJ6GCYJ152M | Chip 1.5K] 1 VSCWOL15 AVR Shield Case (A) 1 
R6013. | | exseccysi83m | Chip 18K} 1 VSCWOL16 AVR Shield Case (B) 1 
R6014 ERJ6GCYJ471M | Chip 470; 1 WMZWO123 AVR Shield Barrier 1 
R6015 ERJ6GCYJ103M | Chip 10K} 1 VSCWO119 MI.COM. Shield Case (C) 1 
R6016 [Terreecys512m | chip 5.1K) 1 vscw0120 MI,COM. Shield Case (D) i 
| R6017 | |erseccys102m | Chip iK| 1 vMzw0128 MI.COM. Insulation 1 
R6018 | | grséccys222M | chip 2.2K/ 1 Sheet (B) 
R6019 | | ersoccys562m Chip 5.6K) 1 VEKWO0830 Lug Terminal Ass'y L 
R6020 | | erseccysio3m | chip 10K] 1 
R6021 ERJ6GCYJ562M | Chip 5.6K/ 1 
R6022 | | erséccys103m | Chip 10K] 1 
R6023 “TERI6GCYJ564M | Chip 560K| 1 ; VEPWO109C TUBE SOCKET C.B.A. 
R6024 , 6025 ERJ6OGCYJ103M | Chip 10K | 2 
R6026 | | grseccyso12m | chip 9.1K] 1 


5-17 


Pa 
am —— ane part Name & e Remarks Ref. No. Part No. Part Name & Deacription bet 
Resiator R406 ERJ6GCYJ104M | Chip 100K/ 1 
R619 ERDS2TJ105 _| Resistor 14/q My R407 ERJOGCYJ681M [ Chip 680| 1 
R408 ERJ6GCYJ274M | Chip 270K{ 1 
R409 ERJ6GCYJ103M | Chip lox| 1 
R410 ERJ6GCYJ272M | Chip 2.7K{ 1 
Capacitor | R41 ERJ6GCYJ103M | Chip 1oK| i 
C621 Tecqei66s2ne? | mylar ie00v0.0068) 1 R412 ERJ6GCYJ271M | Chip 270) 1 
R413 ERJ6GCYJ471M | Chip 470} 1 
R414 ERJ6GCYJ682M | Chip 6.8K} 1 
R415 ERJ6GCYJ393M | Chip 39K) 1 
Miscellaneous R416 ERJ6GCYJ103M | Chip 10K} 1 
Viskilié Tube Socket 1 R417 ,418 ERJ6GCYJ104M | Chip 100K] 2 
R419 ERJ6GCYJ274M Chip 270K 1 
R420 ERJ6GCYJ681M | Chip 680) 1 
R421 ERJ6GCYJ101M | Chip 100) 1 
VEPWO259 REAR SIDE C.BA. R422 ERJ6GCYJ104M | Chip 100K; 1 
R423 ERJ6GCYJ103M | Chip 10K) 1 
R424 ERJ6GCYJ272M | Chip 2.7K) 1 
Variable Resistors R425 ERJ6GCYJ560M | Chip 56; 1 
VR501,502 VRVW0001 R.B. Volume 2 R426,427 ERJ6OGCYJ272M | Chip 2.7K) 2 
R428 429 ERJ6GCYJ102M | Chip Ki 2 
R430,431 ERJ6GCYJ681M | Chip 680) 2 
R432,433 ERJ6GCYJ102M ‘Chip 1K| 2 
Switches R434 ERJ6GCYJ152M | Chip 1.5K, 1 
$W501 vssw0025 NEGA/POSI SW 1 R436 ERJ6GCYOROO | Chip ol a 
SW502 vsswoo21 Standby SW L 
Capacitors 
Diodes c401 ECEAICKS100 Electrolytic 16V 10 1 
DSOl TLsc208 Power Lamp 1 | c402 _ECEAIHKNO1O Electrolytic _50V 1] 1 
C403, 404 ECEAIHKSO10 | Electrolytic _50V 1! 2 
C405 | ECEAOJKS470 Electrolytic 6.3V 47/1 
~ C406 ECEAIHKS2R2 Electrolytic 50V2,2| 1 
Miscellaneous C407 ECEALASS22i | Electrolytic 10V. 220! 1 
CN501 VEKWO709-1 2P Connector Ass'y 1 C408 ECEALAKS470 Electrolytic 10V 4A7| 1 
cN502 VEKWO710 5P Connector Ass'y 1 c409 ECEAICKS220 | Electrolytic _16V 22] 1 
oN503 VERWOT75 2P Connector Ass'y 1 c410 ECEAQJKS101 | Electrolytic 6.3¥_ 100; 1 
C411,412 ECUMIH680KN [Chip Ceramic 50V__68P| 2 
c413 ECEAIHKSO10 | Electrolytic _50V ij. 
c4l4 ECEALHKS2R2 Electrolytic 50V 2.2 1 
T | VEpwo262 AUDIO C.B.A. | C415 ECEA1HKS010 Electrolytic 50V 1 
TF | | C416 ECEAQJKS470 | Electrolytic 6.3V 47/1 1 
| C417 |_| BCEALHKNO10 | Electrolytic 50V 1jol 
Integrated Circuit C418 ECEAIHKSO10 | Electrolytic  50V r}o4 
Ic40l AN6558S I 419 | | ECEALCKS100 | Electrolytic _16V 10; 1 
C420 ECEAIHKSO10 | Electroltyic S50V if 1 
i C42 ECEAICKS100 | Electrolytic 16V 10] 1 
|__| 
| 
Transistors 
Q401 2SD601 (R) Chip 1 
| 002,403 | | 2sc24055 Chip 2 Coil 
Q404 ~y 28D601(R) 1 L401 ELEY102KA lmH| 1 
Q40s5 28C24058 Chip 1 
po Switch 
Diodes sw40l vsswoo25 ST/MONO Selection SW L 
D401, 402 | OA9OAR 2 
D403 MT27T-A 1 
D404 405 OA90AR 2 
D406 MT27T-A 1 Miscellaneous 
VIJWO007 Jack 2 
[~~] CN401 VEKW0706 3P Connector Asa'y 1 
re “| | en4oz VEKWO720 3P Connector Ass'y 1 
[OS Resistors CNOO1 VEKWO707 4P Connector Ase'y 1 
R401 ERJ6OGCYJ472M | Chip 4.7K| 1 
R402 ERJ6GCYJ560M | Chip 56{ 1 
R403, 404 ERJ6GCYI104M | Chip 100K} 2 
R405 || ERI6GCYILOIM Chip 100] 1 


5-18 


Pea 
Ref. No. Part No. Part Name & Description a Ref. No. Part No. Part Name & Description bet 
VEPWO260 POWER ZOOM SW C.B.A. Miscellanoues 
$4165 Newvicon L 
ELY184208J __| DY Ass'y L 
Transistors | VEKWO721-1 Camera Cable L 
801-804 2SD601 (Q,R) Chip 4 VEKWO717 1 
NR44 2 
[~ CNOOS VEKWO699 2P Connector Ass'y 1 
Resistors VEKWO724 Bias Light Ass'y 1 
R801 ERJ6GC¥J682M | Chip 6.8K} 1 CNO02 VEKWO713 9P Connector Ass'y 1 
R802 | ERJ6GCYJ560M | Chip 56] 1 CNO06 VIBWO333 F.P.C. (A) 1 
| R803, 804 Tgrseccysi03m | Chip 10K| 2 cNo07 VJBW0337 _F.P.C. (E) L 
R805, 806 ERJ6GCYJ822M | Chip 8.2K) 2 
R807 | erseccyse2im | chip 820] 1 ' 
!- 
| ; VEPW0265 MI. COM. SW C.B.A. 
ae 
i ;, Capacitor 
c801 |  BCEALASS221 Electrolytic 10V 220] 1 Miscellanoves 
CNOO4 i VEKWO715-1 B Connector Ass'y L 
VEKW0363 Lug Terminal Ass'y 1 
: Short Plugs _ 
P801 yJPWOOO9 OP 1 | VEPW0266 i E.V.F. C.B.A. 
| P802 vJPWOO02 2p). i 
| 
“ Transistors 
a / | 9901 2SD662(R) 1 
VEPWO264 | KEY BOARD C.B.A. Q902 28B709A(R) Chip L 
Q903 28D968(R) Chip 1 
: Q906-908 2SD601(Q,R) . Chip 3 
Diodes | 
D7201-7213 MAISIA Chip 13 
Diodes 
{D901 MA151K Chip 1 
D902 MA162 i 
Resistors D903 $1B01-01 Ll 
R7201-7206 | ERJ8GCYOROO Chip 0 6 i 
a + 
t Resistors 
Miscellaneous i R901 ERJ8GCYJ223W | Chip __ 22K] 1 
CNO11 |_| wiBwO338 F.P.C. (F) 1 R902 ERJ6GCYJ332M | Chip 3.3K] 1 
| VMZWO142 Flexible Protection Sheet| 1 R903 ERJ8GCYJ681W | Chip 680} 1 
| : R904 ERDS2TJ222 Resistor L/aw 2.2K] 
l R905 ERDS2TJ101 Resistor law 100] ob 
R906 ERJ8GCYJ102W | Chip ix] 1 
VEPWO278 VCR/CAMERA SW C.B.A. R907 ERDS21J103 Resistor L/4w 10K) 1 
—[ R908 ERJ6GCYJ333M_ | Chip 33K} 1 
R909 ERJ6GCYJ220M | Chip 22; 4 
Switch R910,911 ERJ8GCYJ105W | Chip IM} 2 | 
$w702 “| yssw0o19 1 R912 ERJ8GCYJ152W | Chip 1.5K) 1 
— ] R916 ERJ6GCYJ152M | Chip 1.5K) 1 
i R922 BRI6CCYJ102M | Chip 1K} 4 
[| R923,924 ERJ6GCYJ823M_ | Chip emx| 2 
[ Miscellaneous R925 ERJ6GCY5102M_ | Chip 1K|_ 1 
—— 
CN705 VEKW0692-1 2P Connector Ass'y 1 R926 ERJ6G6CYJ562M | Chip 5.6K 1 
R927 | ERJSGCYJ102W | Chip uwK| 4 
R928 ERDS2TJ273 Resistor 1/4W 27K) 1 
[| R929,930 ERD25VJ225 Resistor 1/4W 2.2m] 2 
VEPWO280 MIC JACK C.B.A. R931 ERD25VJ185 Resistor L/4w 18M) 1 
[ 
rd | 
i | Miscellaneous 
L a 
cN403 |__| veKwo705 3P Connector Ass'y 1 Variable Resistors 
ysaw0006 Mic Jack 1 ¥R901 EVML4GA00B13 1KBj 1 
| | vuzwo126 Jack Barrier 1 vR902 EVM3AGA00B55 500KB} 1 
| vscwo11s Jack Shield Case i VR903 EVM7AGA00B26 2MB/ ol 
|__| 


5-19 


. 
nat. Ro, PutNo. | Pat Name &Dewpton | 2 Auto Focus Section 
Resistors Item Drawing No. Description Pes} Availa- Part No. Remark 
C901 ECEA1AK470 Electrolytic 10V 47; 1 No. Set | bility 
c902 ECUM1H331KM Chip Ceramic 50V 330P 1 
903 ECEAICS471$ {Electrolytic 16v  470/ 1 1 HOOD CAP 1 VKUWO0S 1 
c904 ECEAIAK470 Electrolytic _10V 47d 2 LENS HOOD 1 VRUWO039 
C906 ECEA1JS220 Electrolytic 63V 22) 1 3 FOCUS RING RUBBER 1 VMGW0067 
c907 ECEA1JS100 Electrolytic 63V lo] 1 4 DISTANCE INDICATOR RING 1 VKGWO560 
c908 VCAMX50V473J | Mylar 50v_0.047| 1 5 LENS BARREL RING ASS'Y 1 VxDW0007 
c909 | ECQE2104KS Mylar 2sov__0.1| 1 6 IRIS MOTOR ASS'Y 1 VVAW0020 
’ / 7 MASTER LENS ASS'Y 1 VxDw0008 
LL ; caren _ g900r | 8 MASTER LENS HOLDER 1 WMSWO051 
' ' : My zsov 10 A.F, MOTOR ASS'Y 1 VEKWO779 
] ] Ti SHIELD PIECE B 1 VSCWO136 
12 SHIELD PIECE A 1 vscw0137 
: | 13 LEAD WIRE HOLDER 1 VMAWO235 
_ ! | ! 14 A.F. COVER B 1 VKGW0561 
l coils 15 A.F. LENS COVER A 1 VKGWO562 
1901) VLQ9H391K : 390uH | 1 16 CONDENCER LENS 2 VELWO084 
L902 ELH5L103 Lineality Coil 1 Vv S.P.D. ASS'Y 1 VEAWO041 
1904 EIR-7QGO06B 1 18 ZOOM LEVER ASS'Y 1 VMLWOOLS 
19 COVER SET PLATE L VMAW0236 
20 INSULATION SHEET 1 VMZWO147 
21 A.F. LENS COVER B 1 VKGWO563 
22 LED ASS'Y 1 VEKWO717 
23 END SW ASS'Y i VEKWO778 
24 Z00M MOTOR ASS'Y 1 VEKWO780 
RELAY LENS ADJUSTMENT 
25 SCREW HOLDER 1 VMAWO237 
26 A.F. COVER A ASS'Y 1 VKGWO554 
Switch 27 F.0. BUTTON SPRING 1 vMBWO067 
sw901 vssw0026 R.L Selection SW Ll 28 F.0. BUTTON L VGTWO152 
29 FILTER HOLDER ASS'Y 1 VKAWO0A2 
30 AWB SW BUTTON 1 VGTWO153 
31 S ADJUSTMENT HOLL PLATE 1 VGPWO2% 
Short Plugs 32 F.0, SW PLATE 1 VGPWO297 
P901 EMCS0650Z 6P 1 33 A.F. SW PLATE 1 VGPW0298 
P902 vJPW0003 3P 1 34 P CUSHION RUBBER RING 2 VMGW0068 
P903 EMCS0350Z 3P 1 35 P CUHSION RUBBER RING 2 VMGW006) 
P904 EMCS04502 4P 1 36 P.Z. MOTOR RUBBER i VMGW007) 
| 37 RELAY LENS ADJUSTMENT SCREW 1 vMswOOS? 
| | | 
i | SCREW 
~T [Miscellaneous PAN HEAD PRECISION SCREWS 
VEKWO716 CRT Socket Ass'y 1 38 M2x2 L XQN2+A21C 
VEKWO722 Tally LED Ass‘y 1 39 M2x3 2 XQN2+A31C 
40 M2x4 7 XQN2+AF\FXK 
~] 41 M2x8 1 XQN2+AFIFKK 
| 42 M2x4 2 XQN2+CFIPRK 
~ | | vepwo261 E.V.F. LED C.B.A. 43 M1. 7x2 1 XQN17+A12F KK 
44 M1.7x5 3 XQN17+AISFXK 
| 45 M1.7x3 3 XOQNL7+CPKK 
. | Diode 46 M1. 7x4 1 XQNI7+CRXK 
D904 TLG124A [4 47 ML.7x3.5 | 1 XQN17+CB5FXK 
; COté<‘—s~SCST 48 ML. 7x4 4 XOQNI74+CHFKK 
49 M2.3x14.5) 4 XQN23+C4 57 XK 
PRECISION MINI-SCREWS 
r | | Miscellaneous 50 M2x2.5 2 XQS2+A2 7K 
cN901 | | VEKWO703 3P Connector Ass'y 1 51 M2x4 4 XQS2+AF XK 
| S*dS«S vows LED Spacer 1 52 P MOTOR FIXING SCREW 2 VHDWO04? 
WD 53 F MOTOR FIXING SCREW 2 VHDWO004 3 | 
i RELAY LENS ADJUSTMENT 
VEKWO719 12P Cable Ags'y 1 54 SCREW 1 VEDWO044 
, | |vexwos3i Ground Spring Ass'y 1 55 W POINT SCREW M3x4 1 VHDWO045 
[1 


5-20 


T 
Pes Pes | 
Ref. No. Part No. Part Name & Description bet Remarke Ref. No. | part No. Part Name & Description bet | Remarks 
— a | 
~~ T° ) VEpwo36L AUTO FOCUS (A) C.B.A. 1 LJ5101 | | LVO2ZIFMEJOLA | 10P Connector 1 
[- +] Vepwo362 AUTO FOUCS (B) C.B.A. 1 | ~ "LJ5102 I“ LVO21FMEJO6A | A Filter Connector (2P) 1 
[pw 0563 WB. 6 CLBAA. i! ~ 135103 LVOZIFMEJO5A | WB Connector 1 
[ 1 T VEPWO365_ AWB HODE SELECT SW C.B.A.| 1 ; - i 
[| | veevosse FOCUS OUT SW C.B.A. 1 7 P5101 | | LVOL6FMEJO2A ; 1 | 
[— rn ~ ~~ P5103 + | LVOL6FMEJO2A L 
a + i a —4 
Jn et en P5104 “TT VO21EMESIGA 1 
r en ° ; [ 5105 LVOI4FYEJOSA | IDENTIFICATION 1 
[om P5106 LVOI7EVEJO9A 1 
| er Integrated Circuits i . __ 4 
Icsioi |_| HH6952 —— : l HLP-30RG IR-LED Ass'y l 
lres102— SC AN7@L05 re oe LVO21FMEWO1A | Insulation Wire 1 
[~ _ ~ LVOZ1FMEWO2A Relay Connector 1 
. — | 
— 1 XB-00124 1 
Po — a — 
ap ——. — +—4 ——— 
Diodes - | | : ; es _ _—_| 
acc Zener Diode 1 = a ; ee 8 _. 
| | M2303¢ 00 emer Diode Lt 1 ao 
MA1062 | Zener Diode _ | ato ot 
-0A99 1 
joer jee - a 
| . a ce | 
a ee ec re a ee fe _ 
fe = pf Ev A 
— —j— — ---+ ee ee eh 
1 | Transistors I . _ —_ 
4. t—. — a ee a _ - ee - — ore, 
[q5101 288632 PNP Silicon: LL Pe ee Sp ao 
Q5102 2802458 |NPN Silicon 1 oe ; _ i _ 
BeMe | REI EEO fp - _ - 
a eee _ IE | 
| __ 
| - , Resistors a ce eee. — 
R5101 RSHT330J : - _33W 33] 1 _| oo 
R5102 RSETORIJ wot] 1 | ee 
R5103 RDNT103J~K : 1/6Ww 10K: 1 _ = 
a = 4 _ , 
R5104 RDNT112J-K 1.1K; 1 J 
. a | 
R5105 RDNUIO2J-K _ Kp 
R5106 RDNT103J-K 1/6W 10K] 1 - | 
R5107 RDNULB4I-K 180K] 1 
R5108 RDNT114J3-K 110K] 1 
| R5109 RDNTG74J-K : 470K| 1 
__ —_ —_— a 
= i Variable Resistors i 
vR5101 ~) VEDSRH3~204 200KB! 1 
¥R5102,5103 | VKDSRH3-503 50KB| 2 
| vR5104 VED5RH3~204 200KB; 
~ Capacitors 
pa te —— -+ 
C5101 CsD10D220MM3_ | Tantalum 10V 22; 1 
C5102 CEX25C471QK |Electrolytic 25V 470) 1 
c5103 CCK50B102KY Ceramic 50v 1000P! 1 
€5104 CSD10D220MM3 | Tantalum 10V 22/1 . 
a _ Short Plugs 
oo a 
€N5102 ; | LVO2LFMEJO2A 2P| 1 
CN5105 LVO2ZLFMEJIOA | 1 
€N5107 LVO21FMEJO7A 1 
CN5110 LVO21FMEJO4A 1 
4 |. 
{ 
Switches 
sw5101,5105 LVOLSFMESO2A |WB Switch,F.0. Switch 2 
[Swot | 
SW5 102 LYOLGEMESOSA | Filter Switch 1 
sw5103 LVO21¥MESO2A [AWB Switch 1 
sw5104 LVO21FMESO1A | END Switch 1 


5-21 


Panasonic. 
MATSUSHITA ELECTRIC 


Printed in Japan